Compare commits

..

3 Commits

Author SHA1 Message Date
Haley Wang
06054b8a73 include group first evaluation into interval ticker 2026-04-08 20:48:29 +08:00
Haley Wang
9197cc8c4c fix data race in group lastEvaluation 2026-04-03 20:50:56 +08:00
Haley Wang
1998469cb6 vmalert: add new metric to help debug group eval timestamp 2026-03-31 20:26:56 +08:00
1758 changed files with 28721 additions and 139369 deletions

0
.codex
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@@ -4,8 +4,6 @@ updates:
directory: "/"
schedule:
interval: "daily"
cooldown:
default-days: 21
- package-ecosystem: "gomod"
directory: "/"
schedule:
@@ -25,8 +23,6 @@ updates:
directory: "/"
schedule:
interval: "daily"
cooldown:
default-days: 21
- package-ecosystem: "npm"
directory: "/app/vmui/packages/vmui"
schedule:

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@@ -1,3 +1,10 @@
**PLEASE REMOVE LINE BELOW BEFORE SUBMITTING**
### Describe Your Changes
Before creating the PR, make sure you have read and followed the [VictoriaMetrics contributing guidelines](https://docs.victoriametrics.com/victoriametrics/contributing/#pull-request-checklist).
Please provide a brief description of the changes you made. Be as specific as possible to help others understand the purpose and impact of your modifications.
### Checklist
The following checks are **mandatory**:
- [ ] My change adheres to [VictoriaMetrics contributing guidelines](https://docs.victoriametrics.com/victoriametrics/contributing/#pull-request-checklist).
- [ ] My change adheres to [VictoriaMetrics development goals](https://docs.victoriametrics.com/victoriametrics/goals/).

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@@ -27,7 +27,7 @@ jobs:
- run: go version
- name: Cache Go artifacts
uses: actions/cache@v5
uses: actions/cache@v4
with:
path: |
~/.cache/go-build

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@@ -40,7 +40,7 @@ jobs:
- run: go version
- name: Cache Go artifacts
uses: actions/cache@v5
uses: actions/cache@v4
with:
path: |
~/.cache/go-build
@@ -50,14 +50,14 @@ jobs:
restore-keys: go-artifacts-${{ runner.os }}-codeql-analyze-${{ steps.go.outputs.go-version }}-
- name: Initialize CodeQL
uses: github/codeql-action/init@v4.35.1
uses: github/codeql-action/init@v4
with:
languages: go
- name: Autobuild
uses: github/codeql-action/autobuild@v4.35.1
uses: github/codeql-action/autobuild@v4
- name: Perform CodeQL Analysis
uses: github/codeql-action/analyze@v4.35.1
uses: github/codeql-action/analyze@v4
with:
category: 'language:go'

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@@ -47,7 +47,7 @@ jobs:
- run: go version
- name: Cache golangci-lint
uses: actions/cache@v5
uses: actions/cache@v4
with:
path: |
~/.cache/golangci-lint
@@ -66,8 +66,8 @@ jobs:
strategy:
matrix:
scenario:
- 'test'
- 'test-386'
- 'test-full'
- 'test-full-386'
- 'test-pure'
steps:
@@ -88,6 +88,11 @@ jobs:
- name: Run tests
run: make ${{ matrix.scenario}}
- name: Publish coverage
uses: codecov/codecov-action@v6
with:
files: ./coverage.txt
apptest:
name: apptest
runs-on: apptest

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@@ -457,9 +457,6 @@ test:
test-race:
go test -tags 'synctest' -race ./lib/... ./app/...
test-386:
GOARCH=386 go test -tags 'synctest' ./lib/... ./app/...
test-pure:
CGO_ENABLED=0 go test -tags 'synctest' ./lib/... ./app/...
@@ -470,10 +467,10 @@ test-full-386:
GOARCH=386 go test -tags 'synctest' -coverprofile=coverage.txt -covermode=atomic ./lib/... ./app/...
apptest:
$(MAKE) victoria-metrics-race vmagent-race vmalert-race vmauth-race vmctl-race vmbackup-race vmrestore-race
$(MAKE) victoria-metrics vmagent vmalert vmauth vmctl vmbackup vmrestore
go test ./apptest/... -skip="^Test(Cluster|Legacy).*"
apptest-legacy: victoria-metrics-race vmbackup-race vmrestore-race
apptest-legacy: victoria-metrics vmbackup vmrestore
OS=$$(uname | tr '[:upper:]' '[:lower:]'); \
ARCH=$$(uname -m | tr '[:upper:]' '[:lower:]' | sed 's/x86_64/amd64/'); \
VERSION=v1.132.0; \

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@@ -4,6 +4,7 @@
[![Docker Pulls](https://img.shields.io/docker/pulls/victoriametrics/victoria-metrics?label=&logo=docker&logoColor=white&labelColor=2496ED&color=2496ED&link=https%3A%2F%2Fhub.docker.com%2Fr%2Fvictoriametrics%2Fvictoria-metrics)](https://hub.docker.com/u/victoriametrics)
[![Go Report](https://goreportcard.com/badge/github.com/VictoriaMetrics/VictoriaMetrics?link=https%3A%2F%2Fgoreportcard.com%2Freport%2Fgithub.com%2FVictoriaMetrics%2FVictoriaMetrics)](https://goreportcard.com/report/github.com/VictoriaMetrics/VictoriaMetrics)
[![Build Status](https://github.com/VictoriaMetrics/VictoriaMetrics/actions/workflows/build.yml/badge.svg?branch=master&link=https%3A%2F%2Fgithub.com%2FVictoriaMetrics%2FVictoriaMetrics%2Factions)](https://github.com/VictoriaMetrics/VictoriaMetrics/actions/workflows/build.yml)
[![codecov](https://codecov.io/gh/VictoriaMetrics/VictoriaMetrics/branch/master/graph/badge.svg?link=https%3A%2F%2Fcodecov.io%2Fgh%2FVictoriaMetrics%2FVictoriaMetrics)](https://app.codecov.io/gh/VictoriaMetrics/VictoriaMetrics)
[![License](https://img.shields.io/github/license/VictoriaMetrics/VictoriaMetrics?labelColor=green&label=&link=https%3A%2F%2Fgithub.com%2FVictoriaMetrics%2FVictoriaMetrics%2Fblob%2Fmaster%2FLICENSE)](https://github.com/VictoriaMetrics/VictoriaMetrics/blob/master/LICENSE)
[![Join Slack](https://img.shields.io/badge/Join%20Slack-4A154B?logo=slack)](https://slack.victoriametrics.com)
[![X](https://img.shields.io/twitter/follow/VictoriaMetrics?style=flat&label=Follow&color=black&logo=x&labelColor=black&link=https%3A%2F%2Fx.com%2FVictoriaMetrics)](https://x.com/VictoriaMetrics/)

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@@ -118,8 +118,8 @@ func main() {
logger.Fatalf("cannot stop the webservice: %s", err)
}
logger.Infof("successfully shut down the webservice in %.3f seconds", time.Since(startTime).Seconds())
vminsertcommon.StopIngestionRateLimiter()
vminsert.Stop()
vminsertcommon.StopIngestionRateLimiter()
vmstorage.Stop()
vmselect.Stop()

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@@ -77,6 +77,16 @@ func insertRows(at *auth.Token, tss []prompb.TimeSeries, mms []prompb.MetricMeta
var metadataTotal int
if prommetadata.IsEnabled() {
var accountID, projectID uint32
if at != nil {
accountID = at.AccountID
projectID = at.ProjectID
for i := range mms {
mm := &mms[i]
mm.AccountID = accountID
mm.ProjectID = projectID
}
}
ctx.WriteRequest.Metadata = mms
metadataTotal = len(mms)
}

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@@ -75,6 +75,11 @@ func insertRows(at *auth.Token, rows []prometheus.Row, mms []prometheus.Metadata
Samples: samples[len(samples)-1:],
})
}
var accountID, projectID uint32
if at != nil {
accountID = at.AccountID
projectID = at.ProjectID
}
for i := range mms {
mm := &mms[i]
mmsDst = append(mmsDst, prompb.MetricMetadata{
@@ -83,6 +88,8 @@ func insertRows(at *auth.Token, rows []prometheus.Row, mms []prometheus.Metadata
Type: mm.Type,
// there is no unit in Prometheus exposition formats
AccountID: accountID,
ProjectID: projectID,
})
}
ctx.WriteRequest.Timeseries = tssDst

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@@ -72,6 +72,11 @@ func insertRows(at *auth.Token, timeseries []prompb.TimeSeries, mms []prompb.Met
var metadataTotal int
if prommetadata.IsEnabled() {
var accountID, projectID uint32
if at != nil {
accountID = at.AccountID
projectID = at.ProjectID
}
for i := range mms {
mm := &mms[i]
mmsDst = append(mmsDst, prompb.MetricMetadata{
@@ -80,8 +85,8 @@ func insertRows(at *auth.Token, timeseries []prompb.TimeSeries, mms []prompb.Met
Type: mm.Type,
Unit: mm.Unit,
AccountID: mm.AccountID,
ProjectID: mm.ProjectID,
AccountID: accountID,
ProjectID: projectID,
})
}
ctx.WriteRequest.Metadata = mmsDst

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@@ -13,9 +13,6 @@ import (
"sync/atomic"
"time"
"github.com/VictoriaMetrics/metrics"
"github.com/golang/snappy"
"github.com/VictoriaMetrics/VictoriaMetrics/lib/awsapi"
"github.com/VictoriaMetrics/VictoriaMetrics/lib/encoding"
"github.com/VictoriaMetrics/VictoriaMetrics/lib/flagutil"
@@ -24,7 +21,10 @@ import (
"github.com/VictoriaMetrics/VictoriaMetrics/lib/persistentqueue"
"github.com/VictoriaMetrics/VictoriaMetrics/lib/promauth"
"github.com/VictoriaMetrics/VictoriaMetrics/lib/ratelimiter"
"github.com/VictoriaMetrics/VictoriaMetrics/lib/timerpool"
"github.com/VictoriaMetrics/VictoriaMetrics/lib/timeutil"
"github.com/VictoriaMetrics/metrics"
"github.com/golang/snappy"
)
var (
@@ -290,7 +290,7 @@ func getAWSAPIConfig(argIdx int) (*awsapi.Config, error) {
accessKey := awsAccessKey.GetOptionalArg(argIdx)
secretKey := awsSecretKey.GetOptionalArg(argIdx)
service := awsService.GetOptionalArg(argIdx)
cfg, err := awsapi.NewConfig(ec2Endpoint, stsEndpoint, region, roleARN, accessKey, secretKey, service, "")
cfg, err := awsapi.NewConfig(ec2Endpoint, stsEndpoint, region, roleARN, accessKey, secretKey, service)
if err != nil {
return nil, err
}
@@ -405,7 +405,8 @@ func (c *client) newRequest(url string, body []byte) (*http.Request, error) {
// Otherwise, it tries sending the block to remote storage indefinitely.
func (c *client) sendBlockHTTP(block []byte) bool {
c.rl.Register(len(block))
bt := timeutil.NewBackoffTimer(c.retryMinInterval, c.retryMaxInterval)
maxRetryDuration := timeutil.AddJitterToDuration(c.retryMaxInterval)
retryDuration := timeutil.AddJitterToDuration(c.retryMinInterval)
retriesCount := 0
again:
@@ -414,10 +415,19 @@ again:
c.requestDuration.UpdateDuration(startTime)
if err != nil {
c.errorsCount.Inc()
remoteWriteRetryLogger.Warnf("couldn't send a block with size %d bytes to %q: %s; re-sending the block in %s",
len(block), c.sanitizedURL, err, bt.CurrentDelay())
if !bt.Wait(c.stopCh) {
retryDuration *= 2
if retryDuration > maxRetryDuration {
retryDuration = maxRetryDuration
}
remoteWriteRetryLogger.Warnf("couldn't send a block with size %d bytes to %q: %s; re-sending the block in %.3f seconds",
len(block), c.sanitizedURL, err, retryDuration.Seconds())
t := timerpool.Get(retryDuration)
select {
case <-c.stopCh:
timerpool.Put(t)
return false
case <-t.C:
timerpool.Put(t)
}
c.retriesCount.Inc()
goto again
@@ -483,10 +493,7 @@ again:
// Unexpected status code returned
retriesCount++
retryAfterHeader := parseRetryAfterHeader(resp.Header.Get("Retry-After"))
// retryAfterDuration has the highest priority duration
if retryAfterHeader > 0 {
bt.SetDelay(retryAfterHeader)
}
retryDuration = getRetryDuration(retryAfterHeader, retryDuration, maxRetryDuration)
// Handle response
body, err := io.ReadAll(resp.Body)
@@ -495,10 +502,15 @@ again:
logger.Errorf("cannot read response body from %q during retry #%d: %s", c.sanitizedURL, retriesCount, err)
} else {
logger.Errorf("unexpected status code received after sending a block with size %d bytes to %q during retry #%d: %d; response body=%q; "+
"re-sending the block in %s", len(block), c.sanitizedURL, retriesCount, statusCode, body, bt.CurrentDelay())
"re-sending the block in %.3f seconds", len(block), c.sanitizedURL, retriesCount, statusCode, body, retryDuration.Seconds())
}
if !bt.Wait(c.stopCh) {
t := timerpool.Get(retryDuration)
select {
case <-c.stopCh:
timerpool.Put(t)
return false
case <-t.C:
timerpool.Put(t)
}
c.retriesCount.Inc()
goto again
@@ -507,6 +519,27 @@ again:
var remoteWriteRejectedLogger = logger.WithThrottler("remoteWriteRejected", 5*time.Second)
var remoteWriteRetryLogger = logger.WithThrottler("remoteWriteRetry", 5*time.Second)
// getRetryDuration returns retry duration.
// retryAfterDuration has the highest priority.
// If retryAfterDuration is not specified, retryDuration gets doubled.
// retryDuration can't exceed maxRetryDuration.
//
// Also see: https://github.com/VictoriaMetrics/VictoriaMetrics/issues/6097
func getRetryDuration(retryAfterDuration, retryDuration, maxRetryDuration time.Duration) time.Duration {
// retryAfterDuration has the highest priority duration
if retryAfterDuration > 0 {
return timeutil.AddJitterToDuration(retryAfterDuration)
}
// default backoff retry policy
retryDuration *= 2
if retryDuration > maxRetryDuration {
retryDuration = maxRetryDuration
}
return retryDuration
}
// repackBlockFromZstdToSnappy repacks the given zstd-compressed block to snappy-compressed block.
//
// The input block may be corrupted, for example, if vmagent was shut down ungracefully and
@@ -537,20 +570,24 @@ func logBlockRejected(block []byte, sanitizedURL string, resp *http.Response) {
}
// parseRetryAfterHeader parses `Retry-After` value retrieved from HTTP response header.
//
// s should be in either HTTP-date or a number of seconds.
// It returns time.Duration(0) if s does not follow RFC 7231.
func parseRetryAfterHeader(s string) time.Duration {
if s == "" {
return 0
// retryAfterString should be in either HTTP-date or a number of seconds.
// It will return time.Duration(0) if `retryAfterString` does not follow RFC 7231.
func parseRetryAfterHeader(retryAfterString string) (retryAfterDuration time.Duration) {
if retryAfterString == "" {
return retryAfterDuration
}
defer func() {
v := retryAfterDuration.Seconds()
logger.Infof("'Retry-After: %s' parsed into %.2f second(s)", retryAfterString, v)
}()
// Retry-After could be in "Mon, 02 Jan 2006 15:04:05 GMT" format.
if parsedTime, err := time.Parse(http.TimeFormat, s); err == nil {
if parsedTime, err := time.Parse(http.TimeFormat, retryAfterString); err == nil {
return time.Duration(time.Until(parsedTime).Seconds()) * time.Second
}
// Retry-After could be in seconds.
if seconds, err := strconv.Atoi(s); err == nil {
if seconds, err := strconv.Atoi(retryAfterString); err == nil {
return time.Duration(seconds) * time.Second
}

View File

@@ -6,11 +6,66 @@ import (
"testing"
"time"
"github.com/golang/snappy"
"github.com/VictoriaMetrics/VictoriaMetrics/lib/encoding"
"github.com/golang/snappy"
)
func TestCalculateRetryDuration(t *testing.T) {
// `testFunc` call `calculateRetryDuration` for `n` times
// and evaluate if the result of `calculateRetryDuration` is
// 1. >= expectMinDuration
// 2. <= expectMinDuration + 10% (see timeutil.AddJitterToDuration)
f := func(retryAfterDuration, retryDuration time.Duration, n int, expectMinDuration time.Duration) {
t.Helper()
for range n {
retryDuration = getRetryDuration(retryAfterDuration, retryDuration, time.Minute)
}
expectMaxDuration := helper(expectMinDuration)
expectMinDuration = expectMinDuration - (1000 * time.Millisecond) // Avoid edge case when calculating time.Until(now)
if retryDuration < expectMinDuration || retryDuration > expectMaxDuration {
t.Fatalf(
"incorrect retry duration, want (ms): [%d, %d], got (ms): %d",
expectMinDuration.Milliseconds(), expectMaxDuration.Milliseconds(),
retryDuration.Milliseconds(),
)
}
}
// Call calculateRetryDuration for 1 time.
{
// default backoff policy
f(0, time.Second, 1, 2*time.Second)
// default backoff policy exceed max limit"
f(0, 10*time.Minute, 1, time.Minute)
// retry after > default backoff policy
f(10*time.Second, 1*time.Second, 1, 10*time.Second)
// retry after < default backoff policy
f(1*time.Second, 10*time.Second, 1, 1*time.Second)
// retry after invalid and < default backoff policy
f(0, time.Second, 1, 2*time.Second)
}
// Call calculateRetryDuration for multiple times.
{
// default backoff policy 2 times
f(0, time.Second, 2, 4*time.Second)
// default backoff policy 3 times
f(0, time.Second, 3, 8*time.Second)
// default backoff policy N times exceed max limit
f(0, time.Second, 10, time.Minute)
// retry after 120s 1 times
f(120*time.Second, time.Second, 1, 120*time.Second)
// retry after 120s 2 times
f(120*time.Second, time.Second, 2, 120*time.Second)
}
}
func TestParseRetryAfterHeader(t *testing.T) {
f := func(retryAfterString string, expectResult time.Duration) {
t.Helper()
@@ -36,6 +91,13 @@ func TestParseRetryAfterHeader(t *testing.T) {
f(time.Now().Add(10*time.Second).Format("Mon, 02 Jan 2006 15:04:05 FAKETZ"), 0)
}
// helper calculate the max possible time duration calculated by timeutil.AddJitterToDuration.
func helper(d time.Duration) time.Duration {
dv := min(d/10, 10*time.Second)
return d + dv
}
func TestRepackBlockFromZstdToSnappy(t *testing.T) {
expectedPlainBlock := []byte(`foobar`)

View File

@@ -211,9 +211,6 @@ func (wr *writeRequest) copyMetadata(dst, src *prompb.MetricMetadata) {
dst.Type = src.Type
dst.Unit = src.Unit
dst.AccountID = src.AccountID
dst.ProjectID = src.ProjectID
// Pre-allocate memory for all string fields.
neededBufLen := len(src.MetricFamilyName) + len(src.Help)
bufLen := len(wr.metadatabuf)

View File

@@ -3,7 +3,6 @@ package remotewrite
import (
"flag"
"fmt"
"math"
"net/http"
"net/url"
"path/filepath"
@@ -12,11 +11,6 @@ import (
"sync/atomic"
"time"
"github.com/VictoriaMetrics/VictoriaMetrics/lib/mdx"
"github.com/cespare/xxhash/v2"
"github.com/VictoriaMetrics/metrics"
"github.com/VictoriaMetrics/VictoriaMetrics/lib/auth"
"github.com/VictoriaMetrics/VictoriaMetrics/lib/bloomfilter"
"github.com/VictoriaMetrics/VictoriaMetrics/lib/bytesutil"
@@ -29,7 +23,6 @@ import (
"github.com/VictoriaMetrics/VictoriaMetrics/lib/memory"
"github.com/VictoriaMetrics/VictoriaMetrics/lib/persistentqueue"
"github.com/VictoriaMetrics/VictoriaMetrics/lib/procutil"
"github.com/VictoriaMetrics/VictoriaMetrics/lib/prommetadata"
"github.com/VictoriaMetrics/VictoriaMetrics/lib/prompb"
"github.com/VictoriaMetrics/VictoriaMetrics/lib/promrelabel"
"github.com/VictoriaMetrics/VictoriaMetrics/lib/promutil"
@@ -37,6 +30,8 @@ import (
"github.com/VictoriaMetrics/VictoriaMetrics/lib/slicesutil"
"github.com/VictoriaMetrics/VictoriaMetrics/lib/streamaggr"
"github.com/VictoriaMetrics/VictoriaMetrics/lib/timeserieslimits"
"github.com/VictoriaMetrics/metrics"
"github.com/cespare/xxhash/v2"
)
var (
@@ -85,14 +80,10 @@ var (
`This may be needed for reducing memory usage at remote storage when the order of labels in incoming samples is random. `+
`For example, if m{k1="v1",k2="v2"} may be sent as m{k2="v2",k1="v1"}`+
`Enabled sorting for labels can slow down ingestion performance a bit`)
maxHourlySeries = flag.Int64("remoteWrite.maxHourlySeries", 0, "The maximum number of unique series vmagent can send to remote storage systems during the last hour. "+
"Excess series are logged and dropped. This can be useful for limiting series cardinality. "+
fmt.Sprintf("Setting this flag to '-1' sets limit to maximum possible value (%d) which is useful in order to enable series tracking without enforcing limits. ", math.MaxInt32)+
"See https://docs.victoriametrics.com/victoriametrics/vmagent/#cardinality-limiter")
maxDailySeries = flag.Int64("remoteWrite.maxDailySeries", 0, "The maximum number of unique series vmagent can send to remote storage systems during the last 24 hours. "+
"Excess series are logged and dropped. This can be useful for limiting series churn rate. "+
fmt.Sprintf("Setting this flag to '-1' sets limit to maximum possible value (%d) which is useful in order to enable series tracking without enforcing limits. ", math.MaxInt32)+
"See https://docs.victoriametrics.com/victoriametrics/vmagent/#cardinality-limiter")
maxHourlySeries = flag.Int("remoteWrite.maxHourlySeries", 0, "The maximum number of unique series vmagent can send to remote storage systems during the last hour. "+
"Excess series are logged and dropped. This can be useful for limiting series cardinality. See https://docs.victoriametrics.com/victoriametrics/vmagent/#cardinality-limiter")
maxDailySeries = flag.Int("remoteWrite.maxDailySeries", 0, "The maximum number of unique series vmagent can send to remote storage systems during the last 24 hours. "+
"Excess series are logged and dropped. This can be useful for limiting series churn rate. See https://docs.victoriametrics.com/victoriametrics/vmagent/#cardinality-limiter")
maxIngestionRate = flag.Int("maxIngestionRate", 0, "The maximum number of samples vmagent can receive per second. Data ingestion is paused when the limit is exceeded. "+
"By default there are no limits on samples ingestion rate. See also -remoteWrite.rateLimit")
@@ -101,11 +92,6 @@ var (
"See https://docs.victoriametrics.com/victoriametrics/vmagent/#disabling-on-disk-persistence . See also -remoteWrite.dropSamplesOnOverload")
dropSamplesOnOverload = flag.Bool("remoteWrite.dropSamplesOnOverload", false, "Whether to drop samples when -remoteWrite.disableOnDiskQueue is set and if the samples "+
"cannot be pushed into the configured -remoteWrite.url systems in a timely manner. See https://docs.victoriametrics.com/victoriametrics/vmagent/#disabling-on-disk-persistence")
disableMetadataPerURL = flagutil.NewArrayBool("remoteWrite.disableMetadata", "Whether to disable sending metadata to the corresponding -remoteWrite.url. "+
"By default, metadata sending is controlled by the global -enableMetadata flag")
enableMdx = flagutil.NewArrayBool("remoteWrite.mdx.enable", "Whether to only retain metrics from VictoriaMetrics services before sending them to the corresponding -remoteWrite.url. "+
"Please see https://docs.victoriametrics.com/victoriametrics/vmagent/#monitoring-data-exchange")
)
var (
@@ -171,8 +157,8 @@ func Init() {
if len(*remoteWriteURLs) == 0 {
logger.Fatalf("at least one `-remoteWrite.url` command-line flag must be set")
}
if limit := getMaxHourlySeries(); limit > 0 {
hourlySeriesLimiter = bloomfilter.NewLimiter(limit, time.Hour)
if *maxHourlySeries > 0 {
hourlySeriesLimiter = bloomfilter.NewLimiter(*maxHourlySeries, time.Hour)
_ = metrics.NewGauge(`vmagent_hourly_series_limit_max_series`, func() float64 {
return float64(hourlySeriesLimiter.MaxItems())
})
@@ -180,8 +166,8 @@ func Init() {
return float64(hourlySeriesLimiter.CurrentItems())
})
}
if limit := getMaxDailySeries(); limit > 0 {
dailySeriesLimiter = bloomfilter.NewLimiter(limit, 24*time.Hour)
if *maxDailySeries > 0 {
dailySeriesLimiter = bloomfilter.NewLimiter(*maxDailySeries, 24*time.Hour)
_ = metrics.NewGauge(`vmagent_daily_series_limit_max_series`, func() float64 {
return float64(dailySeriesLimiter.MaxItems())
})
@@ -298,10 +284,6 @@ func initRemoteWriteCtxs(urls []string) {
rwctxConsistentHashGlobal = consistenthash.NewConsistentHash(consistentHashNodes, 0)
}
if slices.Contains(*enableMdx, true) {
mdx.InitGlobalVmInstanceFilter()
}
rwctxsGlobal = rwctxs
rwctxsGlobalIdx = rwctxIdx
}
@@ -364,7 +346,6 @@ func Stop() {
if sl := dailySeriesLimiter; sl != nil {
sl.MustStop()
}
mdx.GlobalVmInstanceFilter.MustStop()
}
// PushDropSamplesOnFailure pushes wr to the configured remote storage systems set via -remoteWrite.url
@@ -407,7 +388,7 @@ func tryPush(at *auth.Token, wr *prompb.WriteRequest, forceDropSamplesOnFailure
// Push metadata separately from time series, since it doesn't need sharding,
// relabeling, stream aggregation, deduplication, etc.
if !tryPushMetadataToRemoteStorages(at, rwctxs, mms, forceDropSamplesOnFailure) {
if !tryPushMetadataToRemoteStorages(rwctxs, mms, forceDropSamplesOnFailure) {
return false
}
@@ -545,18 +526,11 @@ func pushTimeSeriesToRemoteStoragesTrackDropped(tss []prompb.TimeSeries) {
}
}
func tryPushMetadataToRemoteStorages(at *auth.Token, rwctxs []*remoteWriteCtx, mms []prompb.MetricMetadata, forceDropSamplesOnFailure bool) bool {
func tryPushMetadataToRemoteStorages(rwctxs []*remoteWriteCtx, mms []prompb.MetricMetadata, forceDropSamplesOnFailure bool) bool {
if len(mms) == 0 {
// Nothing to push
return true
}
if at != nil {
for idx := range mms {
mm := &mms[idx]
mm.AccountID = at.AccountID
mm.ProjectID = at.ProjectID
}
}
// Do not shard metadata even if -remoteWrite.shardByURL is set, just replicate it among rwctxs.
// Since metadata is usually small and there is no guarantee that metadata can be sent to
// the same remote storage with the corresponding metrics.
@@ -566,10 +540,6 @@ func tryPushMetadataToRemoteStorages(at *auth.Token, rwctxs []*remoteWriteCtx, m
var wg sync.WaitGroup
var anyPushFailed atomic.Bool
for _, rwctx := range rwctxs {
if !rwctx.enableMetadata {
// Skip remote storage with disabled metadata
continue
}
wg.Go(func() {
if !rwctx.tryPushMetadataInternal(mms) {
rwctx.pushFailures.Inc()
@@ -841,37 +811,17 @@ type remoteWriteCtx struct {
streamAggrKeepInput bool
streamAggrDropInput bool
// enableMetadata indicates whether metadata should be sent to this remote storage.
// It is determined by -remoteWrite.enableMetadata per-URL flag if set,
// otherwise by the global -enableMetadata flag.
enableMetadata bool
enableMdx bool
pss []*pendingSeries
pssNextIdx atomic.Uint64
rowsPushedAfterRelabel *metrics.Counter
rowsDroppedByRelabel *metrics.Counter
rowsDroppedByMdx *metrics.Counter
pushFailures *metrics.Counter
metadataDroppedOnPushFailure *metrics.Counter
rowsDroppedOnPushFailure *metrics.Counter
}
// isMetadataEnabledForURL returns true if metadata should be sent to the remote storage at argIdx.
// It checks the per-URL -remoteWrite.disableMetadata flag first.
// If not set, it falls back to the global -enableMetadata flag.
func isMetadataEnabledForURL(argIdx int) bool {
if disableMetadataPerURL.GetOptionalArg(argIdx) {
// Metadata is explicitly disabled for this URL
return false
}
// Use global -enableMetadata value
return prommetadata.IsEnabled()
}
func newRemoteWriteCtx(argIdx int, remoteWriteURL *url.URL, sanitizedURL string) *remoteWriteCtx {
// strip query params, otherwise changing params resets pq
pqURL := *remoteWriteURL
@@ -940,17 +890,15 @@ func newRemoteWriteCtx(argIdx int, remoteWriteURL *url.URL, sanitizedURL string)
for i := range pss {
pss[i] = newPendingSeries(fq, &c.useVMProto, sf, rd)
}
rwctx := &remoteWriteCtx{
idx: argIdx,
fq: fq,
c: c,
pss: pss,
enableMetadata: isMetadataEnabledForURL(argIdx),
enableMdx: enableMdx.GetOptionalArg(argIdx),
idx: argIdx,
fq: fq,
c: c,
pss: pss,
rowsPushedAfterRelabel: metrics.GetOrCreateCounter(fmt.Sprintf(`vmagent_remotewrite_rows_pushed_after_relabel_total{path=%q,url=%q}`, queuePath, sanitizedURL)),
rowsDroppedByRelabel: metrics.GetOrCreateCounter(fmt.Sprintf(`vmagent_remotewrite_relabel_metrics_dropped_total{path=%q,url=%q}`, queuePath, sanitizedURL)),
rowsDroppedByMdx: metrics.GetOrCreateCounter(fmt.Sprintf(`vmagent_remotewrite_mdx_rows_dropped_total{path=%q,url=%q}`, queuePath, sanitizedURL)),
pushFailures: metrics.GetOrCreateCounter(fmt.Sprintf(`vmagent_remotewrite_push_failures_total{path=%q,url=%q}`, queuePath, sanitizedURL)),
metadataDroppedOnPushFailure: metrics.GetOrCreateCounter(fmt.Sprintf(`vmagent_remotewrite_metadata_dropped_total{path=%q,url=%q}`, queuePath, sanitizedURL)),
@@ -986,7 +934,6 @@ func (rwctx *remoteWriteCtx) MustStop() {
rwctx.rowsPushedAfterRelabel = nil
rwctx.rowsDroppedByRelabel = nil
rwctx.rowsDroppedByMdx = nil
}
// TryPushTimeSeries sends tss series to the configured remote write endpoint
@@ -1004,31 +951,17 @@ func (rwctx *remoteWriteCtx) TryPushTimeSeries(tss []prompb.TimeSeries, forceDro
putRelabelCtx(rctx)
}()
if rwctx.enableMdx && mdx.GlobalVmInstanceFilter != nil {
rctx = getRelabelCtx()
// Make a copy of tss
v = tssPool.Get().(*[]prompb.TimeSeries)
tss = append(*v, tss...)
rowsCountBeforeMdx := getRowsCount(tss)
tss = mdx.GlobalVmInstanceFilter.ApplyMdxFilter(tss)
rowsCountAfterMdx := getRowsCount(tss)
rwctx.rowsDroppedByMdx.Add(rowsCountBeforeMdx - rowsCountAfterMdx)
}
// Apply relabeling
rcs := allRelabelConfigs.Load()
pcs := rcs.perURL[rwctx.idx]
if pcs.Len() > 0 {
if rctx == nil {
// Make a copy of tss before applying relabeling in order to prevent
// from affecting time series for other remoteWrite.url configs.
// See https://github.com/VictoriaMetrics/VictoriaMetrics/issues/467
// and https://github.com/VictoriaMetrics/VictoriaMetrics/issues/599
rctx = getRelabelCtx()
// Make a copy of tss before dropping aggregated series
v = tssPool.Get().(*[]prompb.TimeSeries)
tss = append(*v, tss...)
}
rctx = getRelabelCtx()
// Make a copy of tss before applying relabeling in order to prevent
// from affecting time series for other remoteWrite.url configs.
// See https://github.com/VictoriaMetrics/VictoriaMetrics/issues/467
// and https://github.com/VictoriaMetrics/VictoriaMetrics/issues/599
v = tssPool.Get().(*[]prompb.TimeSeries)
tss = append(*v, tss...)
rowsCountBeforeRelabel := getRowsCount(tss)
tss = rctx.applyRelabeling(tss, pcs)
rowsCountAfterRelabel := getRowsCount(tss)
@@ -1183,21 +1116,3 @@ func newMapFromStrings(a []string) map[string]struct{} {
}
return m
}
func getMaxHourlySeries() int {
limit := *maxHourlySeries
if limit == -1 || limit > math.MaxInt32 {
return math.MaxInt32
}
return int(limit)
}
func getMaxDailySeries() int {
limit := *maxDailySeries
if limit == -1 || limit > math.MaxInt32 {
return math.MaxInt32
}
return int(limit)
}

View File

@@ -222,9 +222,6 @@ func (r *Rule) Validate() error {
if r.Expr == "" {
return fmt.Errorf("expression can't be empty")
}
if _, ok := r.Labels["__name__"]; ok {
return fmt.Errorf("invalid rule label __name__")
}
return checkOverflow(r.XXX, "rule")
}

View File

@@ -136,9 +136,6 @@ func TestRuleValidate(t *testing.T) {
if err := (&Rule{Alert: "alert"}).Validate(); err == nil {
t.Fatalf("expected empty expr error")
}
if err := (&Rule{Record: "record", Expr: "sum(test)", Labels: map[string]string{"__name__": "test"}}).Validate(); err == nil {
t.Fatalf("invalid rule label; got %s", err)
}
if err := (&Rule{Alert: "alert", Expr: "test>0"}).Validate(); err != nil {
t.Fatalf("expected valid rule; got %s", err)
}

View File

@@ -87,7 +87,6 @@ func (m *Metric) DelLabel(key string) {
for i, l := range m.Labels {
if l.Name == key {
m.Labels = append(m.Labels[:i], m.Labels[i+1:]...)
break
}
}
}

View File

@@ -13,18 +13,14 @@ import (
"sync"
"time"
"github.com/cespare/xxhash/v2"
"github.com/golang/snappy"
"github.com/VictoriaMetrics/VictoriaMetrics/lib/bytesutil"
"github.com/VictoriaMetrics/VictoriaMetrics/lib/cgroup"
"github.com/VictoriaMetrics/VictoriaMetrics/lib/httputil"
"github.com/VictoriaMetrics/VictoriaMetrics/lib/logger"
"github.com/VictoriaMetrics/VictoriaMetrics/lib/netutil"
"github.com/VictoriaMetrics/VictoriaMetrics/lib/promauth"
"github.com/VictoriaMetrics/VictoriaMetrics/lib/prompb"
"github.com/VictoriaMetrics/VictoriaMetrics/lib/timeutil"
"github.com/VictoriaMetrics/metrics"
)
@@ -117,10 +113,8 @@ func NewClient(ctx context.Context, cfg Config) (*Client, error) {
input: make(chan prompb.TimeSeries, cfg.MaxQueueSize),
}
for i := 0; i < cc; i++ {
c.wg.Go(func() {
c.run(ctx, i)
})
for range cc {
c.run(ctx)
}
return c, nil
}
@@ -162,7 +156,8 @@ func (c *Client) Close() error {
return nil
}
func (c *Client) run(ctx context.Context, id int) {
func (c *Client) run(ctx context.Context) {
ticker := time.NewTicker(c.flushInterval)
wr := &prompb.WriteRequest{}
shutdown := func() {
lastCtx, cancel := context.WithTimeout(context.Background(), defaultWriteTimeout)
@@ -179,72 +174,45 @@ func (c *Client) run(ctx context.Context, id int) {
cancel()
}
// add jitter to spread remote write flushes over the flush interval to avoid congestion at the remote write destination
h := xxhash.Sum64(bytesutil.ToUnsafeBytes(fmt.Sprintf("%d", id)))
randJitter := uint64(float64(c.flushInterval) * (float64(h) / (1 << 64)))
timer := time.NewTimer(time.Duration(randJitter))
addJitter:
for {
select {
case <-c.doneCh:
timer.Stop()
shutdown()
return
case <-ctx.Done():
timer.Stop()
shutdown()
return
case <-timer.C:
break addJitter
}
}
ticker := time.NewTicker(c.flushInterval)
defer ticker.Stop()
for {
select {
case <-c.doneCh:
shutdown()
return
case <-ctx.Done():
shutdown()
return
case <-ticker.C:
c.flush(ctx, wr)
// drain the potential stale tick to avoid small or empty flushes after a slow flush.
c.wg.Go(func() {
defer ticker.Stop()
for {
select {
case <-c.doneCh:
shutdown()
return
case <-ctx.Done():
shutdown()
return
case <-ticker.C:
default:
}
case ts, ok := <-c.input:
if !ok {
continue
}
wr.Timeseries = append(wr.Timeseries, ts)
if len(wr.Timeseries) >= c.maxBatchSize {
c.flush(ctx, wr)
// drain the potential stale tick to avoid small or empty flushes after a slow flush.
select {
case <-ticker.C:
default:
}
case ts, ok := <-c.input:
if !ok {
continue
}
wr.Timeseries = append(wr.Timeseries, ts)
if len(wr.Timeseries) >= c.maxBatchSize {
c.flush(ctx, wr)
}
}
}
}
})
}
var (
rwErrors = metrics.NewCounter(`vmalert_remotewrite_errors_total`)
rwTotal = metrics.NewCounter(`vmalert_remotewrite_total`)
// sentRows and sentBytes are historical counters that can now be replaced by flushedRows and flushedBytes histograms. They may be deprecated in the future after the new histograms have been adopted for some time.
sentRows = metrics.NewCounter(`vmalert_remotewrite_sent_rows_total`)
sentBytes = metrics.NewCounter(`vmalert_remotewrite_sent_bytes_total`)
flushedRows = metrics.NewHistogram(`vmalert_remotewrite_sent_rows`)
flushedBytes = metrics.NewHistogram(`vmalert_remotewrite_sent_bytes`)
droppedRows = metrics.NewCounter(`vmalert_remotewrite_dropped_rows_total`)
sendDuration = metrics.NewFloatCounter(`vmalert_remotewrite_send_duration_seconds_total`)
bufferFlushDuration = metrics.NewHistogram(`vmalert_remotewrite_flush_duration_seconds`)
remoteWriteQueueSize = metrics.NewHistogram(`vmalert_remotewrite_queue_size`)
_ = metrics.NewGauge(`vmalert_remotewrite_queue_capacity`, func() float64 {
return float64(*maxQueueSize)
})
sentRows = metrics.NewCounter(`vmalert_remotewrite_sent_rows_total`)
sentBytes = metrics.NewCounter(`vmalert_remotewrite_sent_bytes_total`)
droppedRows = metrics.NewCounter(`vmalert_remotewrite_dropped_rows_total`)
sendDuration = metrics.NewFloatCounter(`vmalert_remotewrite_send_duration_seconds_total`)
bufferFlushDuration = metrics.NewHistogram(`vmalert_remotewrite_flush_duration_seconds`)
_ = metrics.NewGauge(`vmalert_remotewrite_concurrency`, func() float64 {
return float64(*concurrency)
@@ -258,7 +226,6 @@ func GetDroppedRows() int { return int(droppedRows.Get()) }
// it to remote-write endpoint. Flush performs limited amount of retries
// if request fails.
func (c *Client) flush(ctx context.Context, wr *prompb.WriteRequest) {
remoteWriteQueueSize.Update(float64(len(c.input)))
if len(wr.Timeseries) < 1 {
return
}
@@ -268,8 +235,10 @@ func (c *Client) flush(ctx context.Context, wr *prompb.WriteRequest) {
data := wr.MarshalProtobuf(nil)
b := snappy.Encode(nil, data)
maxRetryInterval := *retryMaxTime
bt := timeutil.NewBackoffTimer(*retryMinInterval, maxRetryInterval)
retryInterval, maxRetryInterval := *retryMinInterval, *retryMaxTime
if retryInterval > maxRetryInterval {
retryInterval = maxRetryInterval
}
timeStart := time.Now()
defer func() {
sendDuration.Add(time.Since(timeStart).Seconds())
@@ -287,8 +256,6 @@ L:
if err == nil {
sentRows.Add(len(wr.Timeseries))
sentBytes.Add(len(b))
flushedRows.Update(float64(len(wr.Timeseries)))
flushedBytes.Update(float64(len(b)))
return
}
@@ -314,11 +281,12 @@ L:
break
}
if bt.CurrentDelay() > timeLeftForRetries {
bt.SetDelay(timeLeftForRetries)
if retryInterval > timeLeftForRetries {
retryInterval = timeLeftForRetries
}
// sleeping to prevent remote db hammering
bt.Wait(ctx.Done())
time.Sleep(retryInterval)
retryInterval *= 2
attempts++
}

View File

@@ -312,11 +312,9 @@ type labelSet struct {
// On k conflicts in origin set, the original value is preferred and copied
// to processed with `exported_%k` key. The copy happens only if passed v isn't equal to origin[k] value.
func (ls *labelSet) add(k, v string) {
// do not add label with empty value to the result, as it has no meaning:
// if the label already exists in the original query result, remove it to preserve compatibility with relabeling, see https://github.com/VictoriaMetrics/VictoriaMetrics/issues/10766.
// otherwise, ignore the label, see https://github.com/VictoriaMetrics/VictoriaMetrics/issues/9984.
// do not add label with empty value, since it has no meaning.
// see https://github.com/VictoriaMetrics/VictoriaMetrics/issues/9984
if v == "" {
delete(ls.processed, k)
return
}
ls.processed[k] = v
@@ -791,16 +789,7 @@ func firingAlertStaleTimeSeries(ls map[string]string, timestamp int64) []prompb.
// restore restores the value of ActiveAt field for active alerts,
// based on previously written time series `alertForStateMetricName`.
// Only rules with For > 0 can be restored.
func (ar *AlertingRule) restore(ctx context.Context, q datasource.Querier, ts time.Time, lookback time.Duration) error {
if ar.For < 1 {
return nil
}
if len(ar.alerts) < 1 {
return nil
}
nameStr := fmt.Sprintf("%s=%q", alertNameLabel, ar.Name)
if !*disableAlertGroupLabel {
nameStr = fmt.Sprintf("%s=%q,%s=%q", alertGroupNameLabel, ar.GroupName, alertNameLabel, ar.Name)

View File

@@ -1363,7 +1363,6 @@ func TestAlertingRule_ToLabels(t *testing.T) {
{Name: "instance", Value: "0.0.0.0:8800"},
{Name: "group", Value: "vmalert"},
{Name: "alertname", Value: "ConfigurationReloadFailure"},
{Name: "pod", Value: "vmalert-0"},
},
Values: []float64{1},
Timestamps: []int64{time.Now().UnixNano()},
@@ -1375,7 +1374,6 @@ func TestAlertingRule_ToLabels(t *testing.T) {
"group": "vmalert", // this shouldn't have effect since value in metric is equal
"invalid_label": "{{ .Values.mustRuntimeFail }}",
"empty_label": "", // this should be dropped
"pod": "", // this should remove the pod label from query result
},
Expr: "sum(vmalert_alerting_rules_error) by(instance, group, alertname) > 0",
Name: "AlertingRulesError",
@@ -1387,7 +1385,6 @@ func TestAlertingRule_ToLabels(t *testing.T) {
"group": "vmalert",
"alertname": "ConfigurationReloadFailure",
"alertgroup": "vmalert",
"pod": "vmalert-0",
"invalid_label": `error evaluating template: template: :1:298: executing "" at <.Values.mustRuntimeFail>: can't evaluate field Values in type notifier.tplData`,
}

View File

@@ -8,6 +8,7 @@ import (
"hash/fnv"
"maps"
"net/url"
"os"
"sync"
"time"
@@ -213,6 +214,7 @@ func (g *Group) CreateID() uint64 {
// restore restores alerts state for group rules
func (g *Group) restore(ctx context.Context, qb datasource.QuerierBuilder, ts time.Time, lookback time.Duration) error {
for _, rule := range g.Rules {
// Only alerting rule with for > 0 and has active alerts from the first evaluation can be restored
ar, ok := rule.(*AlertingRule)
if !ok {
continue
@@ -220,6 +222,9 @@ func (g *Group) restore(ctx context.Context, qb datasource.QuerierBuilder, ts ti
if ar.For < 1 {
continue
}
if len(ar.alerts) < 1 {
return nil
}
q := qb.BuildWithParams(datasource.QuerierParams{
EvaluationInterval: g.Interval,
QueryParams: g.Params,
@@ -333,6 +338,11 @@ func (g *Group) Init() {
// Start starts group's evaluation
func (g *Group) Start(ctx context.Context, rw remotewrite.RWClient, rr datasource.QuerierBuilder) {
defer func() { close(g.finishedCh) }()
e := &executor{
Rw: rw,
notifierHeaders: g.NotifierHeaders,
}
evalTS := time.Now()
// sleep random duration to spread group rules evaluation
// over maxStartDelay to reduce the load on datasource.
@@ -367,11 +377,6 @@ func (g *Group) Start(ctx context.Context, rw remotewrite.RWClient, rr datasourc
evalTS = evalTS.Add(sleepBeforeStart)
}
e := &executor{
Rw: rw,
notifierHeaders: g.NotifierHeaders,
}
g.infof("started")
eval := func(ctx context.Context, ts time.Time) time.Time {
@@ -400,6 +405,29 @@ func (g *Group) Start(ctx context.Context, rw remotewrite.RWClient, rr datasourc
g.mu.Lock()
g.LastEvaluation = start
g.mu.Unlock()
if g.EvalOffset != nil && e.Rw != nil {
hostname, err := os.Hostname()
if err != nil {
hostname = "unknown"
}
labels := map[string]string{
"__name__": "vmalert_eval_timestamp",
"host": hostname,
"group": g.Name,
"file": g.File,
}
var ls []prompb.Label
for k, v := range labels {
ls = append(ls, prompb.Label{
Name: k,
Value: v,
})
}
ts := newTimeSeries([]float64{float64(ts.Unix())}, []int64{start.Unix()}, ls)
if err := e.Rw.Push(ts); err != nil {
logger.Errorf("group %q: failed to push evaluation timestamp: %s", g.Name, err)
}
}
return ts
}
@@ -409,9 +437,6 @@ func (g *Group) Start(ctx context.Context, rw remotewrite.RWClient, rr datasourc
g.mu.Unlock()
defer g.evalCancel()
// start the interval ticker before the first evaluation,
// so that the evaluation timestamps of groups with the `eval_offset` option are also aligned,
// see https://github.com/VictoriaMetrics/VictoriaMetrics/pull/10773
t := time.NewTicker(g.Interval)
defer t.Stop()

View File

@@ -293,11 +293,9 @@ func (rr *RecordingRule) toTimeSeries(m datasource.Metric) prompb.TimeSeries {
}
// add extra labels configured by user
for k := range rr.Labels {
// do not add label with empty value to the result, as it has no meaning:
// if the label already exists in the original query result, remove it to preserve compatibility with relabeling, see https://github.com/VictoriaMetrics/VictoriaMetrics/issues/10766.
// otherwise, ignore the label, see https://github.com/VictoriaMetrics/VictoriaMetrics/issues/9984.
// do not add label with empty value, since it has no meaning.
// see https://github.com/VictoriaMetrics/VictoriaMetrics/issues/9984
if rr.Labels[k] == "" {
m.DelLabel(k)
continue
}
existingLabel := promrelabel.GetLabelByName(m.Labels, k)

View File

@@ -163,13 +163,11 @@ func TestRecordingRule_Exec(t *testing.T) {
f(&RecordingRule{
Name: "job:foo",
Labels: map[string]string{
"source": "test",
"empty_label": "", // this should be dropped
"pod": "", // this should remove the pod label from query result
"source": "test",
},
}, [][]datasource.Metric{{
metricWithValueAndLabels(t, 2, "__name__", "foo", "job", "foo", "pod", "vmalert-0"),
metricWithValueAndLabels(t, 1, "__name__", "bar", "job", "bar", "source", "origin", "pod", "vmalert-1"),
metricWithValueAndLabels(t, 2, "__name__", "foo", "job", "foo"),
metricWithValueAndLabels(t, 1, "__name__", "bar", "job", "bar", "source", "origin"),
metricWithValueAndLabels(t, 1, "__name__", "baz", "job", "baz", "source", "test"),
}}, [][]prompb.TimeSeries{{
newTimeSeries([]float64{2}, []int64{ts.UnixNano()}, []prompb.Label{

View File

@@ -52,13 +52,7 @@ var (
"alert": rule.TypeAlerting,
"record": rule.TypeRecording,
}
// The "recovering", "noData", "normal", "error" states are used by Grafana.
// Ignore "recovering" since it is not currently acknowledged by vmalert,
// treat "noData" as an alias for "nomatch",
// treat "normal" as an alias for "inactive",
// treat "error" as an alias for "unhealthy"
ruleStates = []string{"ok", "nomatch", "inactive", "firing", "pending", "unhealthy", "recovering", "noData", "normal", "error"}
ruleStates = []string{"ok", "nomatch", "inactive", "firing", "pending", "unhealthy"}
)
type requestHandler struct {
@@ -369,15 +363,6 @@ func newRulesFilter(r *http.Request) (*rulesFilter, *httpserver.ErrorWithStatusC
if !slices.Contains(ruleStates, v) {
return nil, errResponse(fmt.Errorf(`invalid parameter "state": contains not supported value %q`, v), http.StatusBadRequest)
}
// Replace grafana states with supported internal states
switch v {
case "noData":
v = "nomatch"
case "normal":
v = "inactive"
case "error":
v = "unhealthy"
}
rf.states = append(rf.states, v)
}
}

View File

@@ -362,62 +362,40 @@ func (up *URLPrefix) setLoadBalancingPolicy(loadBalancingPolicy string) error {
}
type backendURLs struct {
bhc backendHealthCheck
healthChecksContext context.Context
healthChecksCancel func()
healthChecksWG sync.WaitGroup
bus []*backendURL
}
type backendHealthCheck struct {
ctx context.Context
// mu protects fields below
cancel func()
mu sync.Mutex
isStopped bool
wg sync.WaitGroup
}
func (bhc *backendHealthCheck) run(hc func()) {
bhc.mu.Lock()
defer bhc.mu.Unlock()
if bhc.isStopped {
return
}
bhc.wg.Go(hc)
}
func (bhc *backendHealthCheck) stop() {
bhc.mu.Lock()
bhc.cancel()
bhc.isStopped = true
bhc.mu.Unlock()
bhc.wg.Wait()
}
func newBackendURLs() *backendURLs {
ctx, cancel := context.WithCancel(context.Background())
return &backendURLs{
bhc: backendHealthCheck{
ctx: ctx,
cancel: cancel,
},
healthChecksContext: ctx,
healthChecksCancel: cancel,
}
}
func (bus *backendURLs) add(u *url.URL) {
bus.bus = append(bus.bus, &backendURL{
url: u,
bhc: &bus.bhc,
hasPlaceHolders: hasAnyPlaceholders(u),
url: u,
healthCheckContext: bus.healthChecksContext,
healthCheckWG: &bus.healthChecksWG,
hasPlaceHolders: hasAnyPlaceholders(u),
})
}
func (bus *backendURLs) stopHealthChecks() {
bus.bhc.stop()
bus.healthChecksCancel()
bus.healthChecksWG.Wait()
}
type backendURL struct {
broken atomic.Bool
bhc *backendHealthCheck
healthCheckContext context.Context
healthCheckWG *sync.WaitGroup
concurrentRequests atomic.Int32
@@ -432,7 +410,7 @@ func (bu *backendURL) isBroken() bool {
func (bu *backendURL) setBroken() {
if bu.broken.CompareAndSwap(false, true) {
bu.bhc.run(func() {
bu.healthCheckWG.Go(func() {
bu.runHealthCheck()
bu.broken.Store(false)
})
@@ -454,11 +432,11 @@ func (bu *backendURL) runHealthCheck() {
case <-t.C:
// Verify network connectivity via TCP dial before marking backend healthy.
// See https://github.com/VictoriaMetrics/VictoriaMetrics/issues/9997
ctx, cancel := context.WithTimeout(bu.bhc.ctx, time.Second)
ctx, cancel := context.WithTimeout(bu.healthCheckContext, time.Second)
c, err := netutil.Dialer.DialContext(ctx, "tcp", addr)
cancel()
if err != nil {
if errors.Is(bu.bhc.ctx.Err(), context.Canceled) {
if errors.Is(bu.healthCheckContext.Err(), context.Canceled) {
return
}
logger.Warnf("ignoring the backend at %s for %s because of dial error: %s", addr, *failTimeout, err)
@@ -467,7 +445,7 @@ func (bu *backendURL) runHealthCheck() {
_ = c.Close()
return
case <-bu.bhc.ctx.Done():
case <-bu.healthCheckContext.Done():
return
}
}

View File

@@ -357,7 +357,6 @@ func bufferRequestBody(ctx context.Context, r io.ReadCloser, userName string) (i
maxBufSize := max(requestBufferSize.IntN(), maxRequestBodySizeToRetry.IntN())
if maxBufSize <= 0 {
// Request buffering is disabled.
return r, nil
}
@@ -481,9 +480,6 @@ func tryProcessingRequest(w http.ResponseWriter, r *http.Request, targetURL *url
canRetry := !bbOK || bb.canRetry()
res, err := ui.rt.RoundTrip(req)
if err == nil {
defer func() { _ = res.Body.Close() }()
}
if errors.Is(r.Context().Err(), context.Canceled) {
// Do not retry canceled requests.
@@ -553,6 +549,7 @@ func tryProcessingRequest(w http.ResponseWriter, r *http.Request, targetURL *url
w.WriteHeader(res.StatusCode)
err = copyStreamToClient(w, res.Body)
_ = res.Body.Close()
if errors.Is(r.Context().Err(), context.Canceled) {
// Do not retry canceled requests.
@@ -766,7 +763,7 @@ var concurrentRequestsLimitReached = metrics.NewCounter("vmauth_concurrent_reque
func usage() {
const s = `
vmauth authenticates and authorizes incoming requests and proxies them to VictoriaMetrics components or any other HTTP backends.
vmauth authenticates and authorizes incoming requests and proxies them to VictoriaMetrics.
See the docs at https://docs.victoriametrics.com/victoriametrics/vmauth/ .
`
@@ -795,11 +792,10 @@ func handleConcurrencyLimitError(w http.ResponseWriter, r *http.Request, err err
}
// bufferedBody serves two purposes:
//
// 1. It enables request retries when the request body size does not exceed maxBufSize
// by fully buffering the request body in memory.
// 2. It prevents slow clients from reducing effective server capacity
// by buffering the request body before acquiring a per-user concurrency slot.
// 1. Enables request retries when the body size does not exceed maxBodySize
// by fully buffering the body in memory.
// 2. Prevents slow clients from reducing effective server capacity by
// buffering the request body before acquiring a per-user concurrency slot.
//
// See bufferRequestBody for details on how bufferedBody is used.
type bufferedBody struct {
@@ -823,7 +819,7 @@ func newBufferedBody(r io.ReadCloser, buf []byte, maxBufSize int) *bufferedBody
// See https://github.com/VictoriaMetrics/VictoriaMetrics/issues/8051
if len(buf) < maxBufSize {
// The full request body has been already read into buf.
// Read the full request body into buf.
r = nil
}
@@ -836,7 +832,7 @@ func newBufferedBody(r io.ReadCloser, buf []byte, maxBufSize int) *bufferedBody
// Read implements io.Reader interface.
func (bb *bufferedBody) Read(p []byte) (int, error) {
if bb.cannotRetry {
return 0, fmt.Errorf("cannot read already closed request body")
return 0, fmt.Errorf("cannot read already closed body")
}
if bb.bufOffset < len(bb.buf) {
n := copy(p, bb.buf[bb.bufOffset:])

View File

@@ -21,7 +21,6 @@ import (
"github.com/VictoriaMetrics/VictoriaMetrics/lib/logger"
"github.com/VictoriaMetrics/VictoriaMetrics/lib/procutil"
"github.com/VictoriaMetrics/VictoriaMetrics/lib/pushmetrics"
"github.com/VictoriaMetrics/VictoriaMetrics/lib/snapshot"
"github.com/VictoriaMetrics/VictoriaMetrics/lib/snapshot/snapshotutil"
)

View File

@@ -416,16 +416,6 @@ const (
promTemporaryDirPath = "prom-tmp-dir-path"
)
const (
thanosSnapshot = "thanos-snapshot"
thanosConcurrency = "thanos-concurrency"
thanosFilterTimeStart = "thanos-filter-time-start"
thanosFilterTimeEnd = "thanos-filter-time-end"
thanosFilterLabel = "thanos-filter-label"
thanosFilterLabelValue = "thanos-filter-label-value"
thanosAggrTypes = "thanos-aggr-types"
)
var (
promFlags = []cli.Flag{
&cli.StringFlag{
@@ -461,43 +451,6 @@ var (
Value: os.TempDir(),
},
}
thanosFlags = []cli.Flag{
&cli.StringFlag{
Name: thanosSnapshot,
Usage: "Path to Thanos snapshot directory containing raw and/or downsampled blocks.",
Required: true,
},
&cli.IntFlag{
Name: thanosConcurrency,
Usage: "Number of concurrently running snapshot readers",
Value: 1,
},
&cli.StringFlag{
Name: thanosFilterTimeStart,
Usage: "The time filter in RFC3339 format to select timeseries with timestamp equal or higher than provided value. E.g. '2020-01-01T20:07:00Z'",
},
&cli.StringFlag{
Name: thanosFilterTimeEnd,
Usage: "The time filter in RFC3339 format to select timeseries with timestamp equal or lower than provided value. E.g. '2020-01-01T20:07:00Z'",
},
&cli.StringFlag{
Name: thanosFilterLabel,
Usage: "Thanos label name to filter timeseries by. E.g. '__name__' will filter timeseries by name.",
},
&cli.StringFlag{
Name: thanosFilterLabelValue,
Usage: fmt.Sprintf("Thanos regular expression to filter label from %q flag.", thanosFilterLabel),
Value: ".*",
},
&cli.StringSliceFlag{
Name: thanosAggrTypes,
Usage: "Aggregate types to import from Thanos downsampled blocks. Supported values: count, sum, min, max, counter. " +
"Each aggregate will be imported as a separate metric with the aggregate type as suffix (e.g., metric_name:5m:count). " +
"If not specified, all aggregate types will be imported from downsampled blocks.",
Value: nil,
},
}
)
const (

View File

@@ -27,7 +27,6 @@ import (
"github.com/VictoriaMetrics/VictoriaMetrics/app/vmctl/influx"
"github.com/VictoriaMetrics/VictoriaMetrics/app/vmctl/opentsdb"
"github.com/VictoriaMetrics/VictoriaMetrics/app/vmctl/prometheus"
"github.com/VictoriaMetrics/VictoriaMetrics/app/vmctl/thanos"
"github.com/VictoriaMetrics/VictoriaMetrics/app/vmctl/vm"
"github.com/VictoriaMetrics/VictoriaMetrics/lib/buildinfo"
"github.com/VictoriaMetrics/VictoriaMetrics/lib/httputil"
@@ -286,7 +285,6 @@ func main() {
if err != nil {
return fmt.Errorf("failed to create prometheus client: %s", err)
}
pp := prometheusProcessor{
cl: cl,
im: importer,
@@ -296,59 +294,6 @@ func main() {
return pp.run(ctx)
},
},
{
Name: "thanos",
Usage: "Migrate time series from Thanos blocks (supports raw and downsampled data)",
Flags: mergeFlags(globalFlags, thanosFlags, vmFlags),
Before: beforeFn,
Action: func(c *cli.Context) error {
fmt.Println("Thanos import mode")
vmCfg, err := initConfigVM(c)
if err != nil {
return fmt.Errorf("failed to init VM configuration: %s", err)
}
importer, err = vm.NewImporter(ctx, vmCfg)
if err != nil {
return fmt.Errorf("failed to create VM importer: %s", err)
}
thanosCfg := thanos.Config{
Snapshot: c.String(thanosSnapshot),
Filter: thanos.Filter{
TimeMin: c.String(thanosFilterTimeStart),
TimeMax: c.String(thanosFilterTimeEnd),
Label: c.String(thanosFilterLabel),
LabelValue: c.String(thanosFilterLabelValue),
},
}
cl, err := thanos.NewClient(thanosCfg)
if err != nil {
return fmt.Errorf("failed to create thanos client: %s", err)
}
var aggrTypes []thanos.AggrType
if aggrTypesStr := c.StringSlice(thanosAggrTypes); len(aggrTypesStr) > 0 {
for _, typeStr := range aggrTypesStr {
aggrType, err := thanos.ParseAggrType(typeStr)
if err != nil {
return fmt.Errorf("failed to parse aggregate type %q: %s", typeStr, err)
}
aggrTypes = append(aggrTypes, aggrType)
}
}
tp := thanosProcessor{
cl: cl,
im: importer,
cc: c.Int(thanosConcurrency),
isVerbose: c.Bool(globalVerbose),
aggrTypes: aggrTypes,
}
return tp.run(ctx)
},
},
{
Name: "vm-native",
Usage: "Migrate time series between VictoriaMetrics installations",

View File

@@ -8,10 +8,10 @@ import (
"time"
vmetrics "github.com/VictoriaMetrics/metrics"
"github.com/cheggaaa/pb/v3"
"github.com/VictoriaMetrics/VictoriaMetrics/app/vmctl/opentsdb"
"github.com/VictoriaMetrics/VictoriaMetrics/app/vmctl/vm"
"github.com/cheggaaa/pb/v3"
)
type otsdbProcessor struct {
@@ -89,6 +89,9 @@ func (op *otsdbProcessor) run(ctx context.Context) error {
// we're going to make serieslist * queryRanges queries, so we should represent that in the progress bar
otsdbSeriesTotal.Add(len(serieslist) * queryRanges)
bar := pb.StartNew(len(serieslist) * queryRanges)
defer func(bar *pb.ProgressBar) {
bar.Finish()
}(bar)
var wg sync.WaitGroup
for range op.otsdbcc {
wg.Go(func() {
@@ -103,22 +106,41 @@ func (op *otsdbProcessor) run(ctx context.Context) error {
}
})
}
runErr := op.sendQueries(ctx, serieslist, seriesCh, errCh, startTime)
/*
Loop through all series for this metric, processing all retentions and time ranges
requested. This loop is our primary "collect data from OpenTSDB loop" and should
be async, sending data to VictoriaMetrics over time.
// Always drain channels and wait for workers to prevent goroutine leaks
The idea with having the select at the inner-most loop is to ensure quick
short-circuiting on error.
*/
for _, series := range serieslist {
for _, rt := range op.oc.Retentions {
for _, tr := range rt.QueryRanges {
select {
case otsdbErr := <-errCh:
return fmt.Errorf("opentsdb error: %s", otsdbErr)
case vmErr := <-op.im.Errors():
otsdbErrorsTotal.Inc()
return fmt.Errorf("import process failed: %s", wrapErr(vmErr, op.isVerbose))
case seriesCh <- queryObj{
Tr: tr, StartTime: startTime,
Series: series, Rt: opentsdb.RetentionMeta{
FirstOrder: rt.FirstOrder, SecondOrder: rt.SecondOrder, AggTime: rt.AggTime}}:
}
}
}
}
// Drain channels per metric
close(seriesCh)
wg.Wait()
close(errCh)
// check for any lingering errors on the query side
for otsdbErr := range errCh {
if runErr == nil {
runErr = fmt.Errorf("import process failed: \n%s", otsdbErr)
}
return fmt.Errorf("import process failed: \n%s", otsdbErr)
}
bar.Finish()
if runErr != nil {
return runErr
}
log.Print(op.im.Stats())
}
op.im.Close()
@@ -133,34 +155,6 @@ func (op *otsdbProcessor) run(ctx context.Context) error {
return nil
}
// sendQueries iterates over all series and retention ranges, sending queries to workers.
// It returns early if ctx is canceled or an error is received.
func (op *otsdbProcessor) sendQueries(ctx context.Context, serieslist []opentsdb.Meta, seriesCh chan<- queryObj, errCh <-chan error, startTime int64) error {
for _, series := range serieslist {
for _, rt := range op.oc.Retentions {
for _, tr := range rt.QueryRanges {
select {
case <-ctx.Done():
return fmt.Errorf("context canceled: %s", ctx.Err())
case otsdbErr := <-errCh:
otsdbErrorsTotal.Inc()
return fmt.Errorf("opentsdb error: %s", otsdbErr)
case vmErr := <-op.im.Errors():
return fmt.Errorf("import process failed: %s", wrapErr(vmErr, op.isVerbose))
case seriesCh <- queryObj{
Tr: tr, StartTime: startTime,
Series: series, Rt: opentsdb.RetentionMeta{
FirstOrder: rt.FirstOrder,
SecondOrder: rt.SecondOrder,
AggTime: rt.AggTime,
}}:
}
}
}
}
return nil
}
func (op *otsdbProcessor) do(s queryObj) error {
start := s.StartTime - s.Tr.Start
end := s.StartTime - s.Tr.End
@@ -169,7 +163,6 @@ func (op *otsdbProcessor) do(s queryObj) error {
return fmt.Errorf("failed to collect data for %v in %v:%v :: %v", s.Series, s.Rt, s.Tr, err)
}
if len(data.Timestamps) < 1 || len(data.Values) < 1 {
log.Printf("no data found for %v in %v:%v...skipping", s.Series, s.Rt, s.Tr)
return nil
}
labels := make([]vm.LabelPair, 0, len(data.Tags))

View File

@@ -108,10 +108,10 @@ func (c Client) FindMetrics(q string) ([]string, error) {
if err != nil {
return nil, fmt.Errorf("failed to send GET request to %q: %s", q, err)
}
defer func() { _ = resp.Body.Close() }()
if resp.StatusCode != 200 {
return nil, fmt.Errorf("bad return from OpenTSDB: %d: %v", resp.StatusCode, resp)
}
defer func() { _ = resp.Body.Close() }()
body, err := io.ReadAll(resp.Body)
if err != nil {
return nil, fmt.Errorf("could not retrieve metric data from %q: %s", q, err)
@@ -130,12 +130,12 @@ func (c Client) FindSeries(metric string) ([]Meta, error) {
q := fmt.Sprintf("%s/api/search/lookup?m=%s&limit=%d", c.Addr, metric, c.Limit)
resp, err := c.c.Get(q)
if err != nil {
return nil, fmt.Errorf("failed to send GET request to %q: %s", q, err)
return nil, fmt.Errorf("failed to set GET request to %q: %s", q, err)
}
defer func() { _ = resp.Body.Close() }()
if resp.StatusCode != 200 {
return nil, fmt.Errorf("bad return from OpenTSDB: %d: %v", resp.StatusCode, resp)
}
defer func() { _ = resp.Body.Close() }()
body, err := io.ReadAll(resp.Body)
if err != nil {
return nil, fmt.Errorf("could not retrieve series data from %q: %s", q, err)
@@ -185,7 +185,6 @@ func (c Client) GetData(series Meta, rt RetentionMeta, start int64, end int64, m
if err != nil {
return Metric{}, fmt.Errorf("failed to send GET request to %q: %s", q, err)
}
defer func() { _ = resp.Body.Close() }()
/*
There are three potential failures here, none of which should kill the entire
migration run:
@@ -197,6 +196,7 @@ func (c Client) GetData(series Meta, rt RetentionMeta, start int64, end int64, m
log.Printf("bad response code from OpenTSDB query %v for %q...skipping", resp.StatusCode, q)
return Metric{}, nil
}
defer func() { _ = resp.Body.Close() }()
body, err := io.ReadAll(resp.Body)
if err != nil {
log.Println("couldn't read response body from OpenTSDB query...skipping")
@@ -239,20 +239,27 @@ func (c Client) GetData(series Meta, rt RetentionMeta, start int64, end int64, m
In all "bad" cases, we don't end the migration, we just don't process that particular message
*/
if len(output) < 1 {
// no results returned...return an empty object without error
return Metric{}, nil
}
if len(output) > 1 {
return Metric{}, fmt.Errorf("unexpected number of series returned: %d for query %q; expected 1", len(output), q)
// multiple series returned for a single query. We can't process this right, so...
return Metric{}, nil
}
if len(output[0].AggregateTags) > 0 {
return Metric{}, fmt.Errorf("aggregate tags %v present in response for query %q; series may be suppressed", output[0].AggregateTags, q)
// This failure means we've suppressed potential series somehow...
return Metric{}, nil
}
data := Metric{}
data.Metric = output[0].Metric
data.Tags = output[0].Tags
/*
We evaluate data for correctness before formatting the actual values
to skip a little bit of time if the series has invalid formatting
*/
data, err = modifyData(data, c.Normalize)
if err != nil {
return Metric{}, fmt.Errorf("failed to convert metric data for query %q: %w", q, err)
return Metric{}, nil
}
/*

View File

@@ -32,7 +32,7 @@ func convertDuration(duration string) (time.Duration, error) {
var err error
var timeValue int
if strings.HasSuffix(duration, "y") {
timeValue, err = strconv.Atoi(strings.TrimSuffix(duration, "y"))
timeValue, err = strconv.Atoi(strings.Trim(duration, "y"))
if err != nil {
return 0, fmt.Errorf("invalid time range: %q", duration)
}
@@ -42,7 +42,7 @@ func convertDuration(duration string) (time.Duration, error) {
return 0, fmt.Errorf("invalid time range: %q", duration)
}
} else if strings.HasSuffix(duration, "w") {
timeValue, err = strconv.Atoi(strings.TrimSuffix(duration, "w"))
timeValue, err = strconv.Atoi(strings.Trim(duration, "w"))
if err != nil {
return 0, fmt.Errorf("invalid time range: %q", duration)
}
@@ -52,7 +52,7 @@ func convertDuration(duration string) (time.Duration, error) {
return 0, fmt.Errorf("invalid time range: %q", duration)
}
} else if strings.HasSuffix(duration, "d") {
timeValue, err = strconv.Atoi(strings.TrimSuffix(duration, "d"))
timeValue, err = strconv.Atoi(strings.Trim(duration, "d"))
if err != nil {
return 0, fmt.Errorf("invalid time range: %q", duration)
}
@@ -95,9 +95,6 @@ func convertRetention(retention string, offset int64, msecTime bool) (Retention,
if !msecTime {
queryLength = queryLength / 1000
}
if queryLength <= 0 {
return Retention{}, fmt.Errorf("ttl %q resolves to non-positive query range %d; use a larger duration", chunks[2], queryLength)
}
queryRange := queryLength
// bump by the offset so we don't look at empty ranges any time offset > ttl
queryLength += offset
@@ -141,29 +138,16 @@ func convertRetention(retention string, offset int64, msecTime bool) (Retention,
2. we discover the actual size of each "chunk"
This is second division step
*/
divisor := queryRange / (rowLength * 4)
if divisor == 0 {
querySize = queryRange
} else {
querySize = queryRange / divisor
}
querySize = int64(queryRange / (queryRange / (rowLength * 4)))
} else {
/*
Unless the aggTime (how long a range of data we're requesting per individual point)
is greater than the row size. Then we'll need to use that to determine
how big each individual query should be
*/
divisor := queryRange / (aggTime * 4)
if divisor == 0 {
querySize = queryRange
} else {
querySize = queryRange / divisor
}
querySize = int64(queryRange / (queryRange / (aggTime * 4)))
}
if querySize <= 0 {
return Retention{}, fmt.Errorf("computed non-positive querySize=%d for retention %q; check parameters", querySize, retention)
}
var timeChunks []TimeRange
var i int64
for i = offset; i <= queryLength; i = i + querySize {

View File

@@ -1,233 +0,0 @@
package thanos
import (
"encoding/binary"
"errors"
"fmt"
"github.com/prometheus/prometheus/tsdb/chunkenc"
)
// ChunkEncAggr is the top level encoding byte for the AggrChunk.
// It is defined by Thanos as 0xff to prevent collisions with Prometheus encodings.
const ChunkEncAggr = chunkenc.Encoding(0xff)
// AggrType represents an aggregation type in Thanos downsampled blocks.
type AggrType uint8
// AggrTypeNone indicates raw blocks with no aggregation.
// It is used as a sentinel to distinguish raw block processing from downsampled.
const AggrTypeNone AggrType = 255
// Valid aggregation types matching Thanos definitions.
const (
AggrCount AggrType = iota
AggrSum
AggrMin
AggrMax
AggrCounter
)
// AllAggrTypes contains all supported aggregation types.
var AllAggrTypes = []AggrType{AggrCount, AggrSum, AggrMin, AggrMax, AggrCounter}
func (t AggrType) String() string {
switch t {
case AggrCount:
return "count"
case AggrSum:
return "sum"
case AggrMin:
return "min"
case AggrMax:
return "max"
case AggrCounter:
return "counter"
}
return "<unknown>"
}
// ParseAggrType parses aggregate type from string.
func ParseAggrType(s string) (AggrType, error) {
switch s {
case "count":
return AggrCount, nil
case "sum":
return AggrSum, nil
case "min":
return AggrMin, nil
case "max":
return AggrMax, nil
case "counter":
return AggrCounter, nil
}
return 0, fmt.Errorf("unknown aggregate type: %q", s)
}
// ErrAggrNotExist is returned if a requested aggregation is not present in an AggrChunk.
var ErrAggrNotExist = errors.New("aggregate does not exist")
// AggrChunk is a chunk that is composed of a set of aggregates for the same underlying data.
// Not all aggregates must be present.
// This is a read-only implementation for decoding Thanos downsampled blocks.
type AggrChunk []byte
// IsAggrChunk checks if the encoding byte indicates this is an AggrChunk.
func IsAggrChunk(enc chunkenc.Encoding) bool {
return enc == ChunkEncAggr
}
// Get returns the sub-chunk for the given aggregate type if it exists.
func (c AggrChunk) Get(t AggrType) (chunkenc.Chunk, error) {
b := c[:]
var x []byte
for i := AggrType(0); i <= t; i++ {
l, n := binary.Uvarint(b)
if n < 1 {
return nil, errors.New("invalid size: failed to read uvarint")
}
if l > uint64(len(b[n:])) || l+1 > uint64(len(b[n:])) {
if l > 0 {
return nil, errors.New("invalid size: not enough bytes")
}
}
b = b[n:]
// If length is set to zero explicitly, that means the aggregate is unset.
if l == 0 {
if i == t {
return nil, ErrAggrNotExist
}
continue
}
chunkLen := int(l) + 1
x = b[:chunkLen]
b = b[chunkLen:]
}
if len(x) == 0 {
return nil, ErrAggrNotExist
}
return chunkenc.FromData(chunkenc.Encoding(x[0]), x[1:])
}
// Encoding returns the encoding type for AggrChunk.
func (c AggrChunk) Encoding() chunkenc.Encoding {
return ChunkEncAggr
}
// errIterator wraps a nop iterator but reports an error via Err().
// It embeds chunkenc.Iterator to inherit all methods (including Seek)
// which avoids go vet stdmethods warning about Seek signature.
type errIterator struct {
chunkenc.Iterator
err error
}
// Err returns the underlying error.
func (it *errIterator) Err() error {
return it.err
}
// newAggrChunkIterator creates a new iterator for the specified aggregate type.
// If the aggregate is not present in the chunk (ErrAggrNotExist), a nop iterator
// is returned without error — the caller will simply see zero samples.
// Real decoding/corruption errors are reported via the iterator's Err() method.
func newAggrChunkIterator(data []byte, aggrType AggrType) chunkenc.Iterator {
chunk := AggrChunk(data)
subChunk, err := chunk.Get(aggrType)
if err != nil {
if errors.Is(err, ErrAggrNotExist) {
return chunkenc.NewNopIterator()
}
return &errIterator{
Iterator: chunkenc.NewNopIterator(),
err: err,
}
}
return subChunk.Iterator(nil)
}
// AggrChunkWrapper wraps AggrChunk to implement chunkenc.Chunk interface.
// It delegates iteration to a specific aggregate type.
type AggrChunkWrapper struct {
data []byte
aggrType AggrType
}
// NewAggrChunkWrapper creates a new AggrChunk wrapper for the specified aggregate type.
func NewAggrChunkWrapper(data []byte, aggrType AggrType) *AggrChunkWrapper {
return &AggrChunkWrapper{
data: data,
aggrType: aggrType,
}
}
// Bytes returns the underlying byte slice.
func (c *AggrChunkWrapper) Bytes() []byte {
return c.data
}
// Encoding returns the AggrChunk encoding.
func (c *AggrChunkWrapper) Encoding() chunkenc.Encoding {
return ChunkEncAggr
}
// Appender returns an error since AggrChunk is read-only.
func (c *AggrChunkWrapper) Appender() (chunkenc.Appender, error) {
return nil, errors.New("AggrChunk is read-only")
}
// Iterator returns an iterator for the specified aggregate type.
func (c *AggrChunkWrapper) Iterator(it chunkenc.Iterator) chunkenc.Iterator {
return newAggrChunkIterator(c.data, c.aggrType)
}
// NumSamples returns the number of samples in the aggregate.
func (c *AggrChunkWrapper) NumSamples() int {
chunk := AggrChunk(c.data)
subChunk, err := chunk.Get(c.aggrType)
if err != nil {
return 0
}
return subChunk.NumSamples()
}
// Compact is a no-op for read-only AggrChunk.
func (c *AggrChunkWrapper) Compact() {}
// Reset resets the chunk with new data.
func (c *AggrChunkWrapper) Reset(stream []byte) {
c.data = stream
}
// AggrChunkPool is a custom Pool that understands AggrChunk encoding (0xff).
// It delegates standard encodings to the default pool and handles AggrChunk specially.
type AggrChunkPool struct {
defaultPool chunkenc.Pool
aggrType AggrType
}
// NewAggrChunkPool creates a new pool that handles AggrChunk encoding.
func NewAggrChunkPool(aggrType AggrType) *AggrChunkPool {
return &AggrChunkPool{
defaultPool: chunkenc.NewPool(),
aggrType: aggrType,
}
}
// Get returns a chunk for the given encoding and data.
func (p *AggrChunkPool) Get(e chunkenc.Encoding, b []byte) (chunkenc.Chunk, error) {
if e == ChunkEncAggr {
return NewAggrChunkWrapper(b, p.aggrType), nil
}
return p.defaultPool.Get(e, b)
}
// Put returns a chunk to the pool.
func (p *AggrChunkPool) Put(c chunkenc.Chunk) error {
if c.Encoding() == ChunkEncAggr {
// AggrChunk wrappers are not pooled
return nil
}
return p.defaultPool.Put(c)
}

View File

@@ -1,110 +0,0 @@
package thanos
import (
"encoding/json"
"os"
"path/filepath"
)
// BlockMeta extends Prometheus BlockMeta with Thanos-specific fields.
type BlockMeta struct {
// Thanos-specific metadata
Thanos ThanosMeta `json:"thanos,omitempty"`
}
// ThanosMeta contains Thanos-specific block metadata.
type ThanosMeta struct {
// Labels are external labels identifying the producer.
Labels map[string]string `json:"labels,omitempty"`
// Downsample contains downsampling information.
Downsample ThanosDownsample `json:"downsample,omitempty"`
// Source indicates where the block came from.
Source string `json:"source,omitempty"`
// SegmentFiles contains list of segment files in the block.
SegmentFiles []string `json:"segment_files,omitempty"`
// Files contains metadata about files in the block.
Files []ThanosFile `json:"files,omitempty"`
}
// ThanosDownsample contains downsampling resolution info.
type ThanosDownsample struct {
// Resolution is the downsampling resolution in milliseconds.
// 0 means raw data (no downsampling).
// 300000 (5 minutes) or 3600000 (1 hour) for downsampled data.
Resolution int64 `json:"resolution"`
}
// ThanosFile contains metadata about a file in the block.
type ThanosFile struct {
RelPath string `json:"rel_path"`
SizeBytes int64 `json:"size_bytes,omitempty"`
}
// ResolutionLevel represents the downsampling resolution.
type ResolutionLevel int64
const (
// ResolutionRaw is for raw, non-downsampled data.
ResolutionRaw ResolutionLevel = 0
// Resolution5m is for 5-minute downsampled data (300000 ms).
Resolution5m ResolutionLevel = 300000
// Resolution1h is for 1-hour downsampled data (3600000 ms).
Resolution1h ResolutionLevel = 3600000
)
// String returns human-readable resolution string.
func (r ResolutionLevel) String() string {
switch r {
case ResolutionRaw:
return "raw"
case Resolution5m:
return "5m"
case Resolution1h:
return "1h"
default:
return "unknown"
}
}
// ReadBlockMeta reads Thanos-extended block metadata from meta.json.
func ReadBlockMeta(blockDir string) (*BlockMeta, error) {
metaPath := filepath.Join(blockDir, "meta.json")
data, err := os.ReadFile(metaPath)
if err != nil {
return nil, err
}
var meta BlockMeta
if err := json.Unmarshal(data, &meta); err != nil {
return nil, err
}
return &meta, nil
}
// IsDownsampled returns true if the block contains downsampled data.
func (m *BlockMeta) IsDownsampled() bool {
return m.Thanos.Downsample.Resolution > 0
}
// Resolution returns the block's downsampling resolution.
func (m *BlockMeta) Resolution() ResolutionLevel {
return ResolutionLevel(m.Thanos.Downsample.Resolution)
}
// ResolutionSuffix returns a suffix string for metric names based on resolution.
// For example: ":5m" or ":1h" for downsampled data, empty for raw data.
func (m *BlockMeta) ResolutionSuffix() string {
switch m.Resolution() {
case Resolution5m:
return ":5m"
case Resolution1h:
return ":1h"
default:
return ""
}
}

View File

@@ -1,83 +0,0 @@
package thanos
import (
"fmt"
"io"
"os"
"path/filepath"
"github.com/prometheus/prometheus/tsdb"
"github.com/prometheus/prometheus/tsdb/chunkenc"
)
// BlockInfo contains information about a block including Thanos metadata.
type BlockInfo struct {
Block tsdb.BlockReader
Resolution ResolutionLevel
IsThanos bool
// Closer releases the block's resources (file descriptors, mmap).
// Must be called only after all queriers on this block have been closed.
Closer io.Closer
}
// OpenBlocksWithInfo opens all blocks and returns them with their metadata.
// snapshotDir must be a snapshot directory containing block directories.
func OpenBlocksWithInfo(snapshotDir string, aggrType AggrType) ([]BlockInfo, error) {
entries, err := os.ReadDir(snapshotDir)
if err != nil {
return nil, fmt.Errorf("failed to read snapshot directory: %w", err)
}
var blocks []BlockInfo
for _, entry := range entries {
if !entry.IsDir() {
continue
}
blockDir := filepath.Join(snapshotDir, entry.Name())
metaPath := filepath.Join(blockDir, "meta.json")
// Check if this is a valid block directory (has meta.json)
if _, err := os.Stat(metaPath); os.IsNotExist(err) {
continue
}
meta, err := ReadBlockMeta(blockDir)
if err != nil {
CloseBlocks(blocks)
return nil, fmt.Errorf("failed to read Thanos metadata for block %s: %w", blockDir, err)
}
var pool chunkenc.Pool
if meta.IsDownsampled() {
// Use AggrChunkPool for downsampled blocks
pool = NewAggrChunkPool(aggrType)
}
block, err := tsdb.OpenBlock(nil, blockDir, pool, nil)
if err != nil {
// Close previously opened blocks before returning error
CloseBlocks(blocks)
return nil, fmt.Errorf("failed to open block %s: %w", blockDir, err)
}
blocks = append(blocks, BlockInfo{
Block: block,
Resolution: meta.Resolution(),
IsThanos: true,
Closer: block,
})
}
return blocks, nil
}
// CloseBlocks closes all blocks in the slice.
// Must be called only after all queriers on these blocks have been closed.
func CloseBlocks(blocks []BlockInfo) {
for _, bi := range blocks {
if bi.Closer != nil {
_ = bi.Closer.Close()
}
}
}

View File

@@ -1,198 +0,0 @@
package thanos
import (
"context"
"fmt"
"time"
"github.com/prometheus/prometheus/model/labels"
"github.com/prometheus/prometheus/storage"
"github.com/prometheus/prometheus/tsdb"
)
// Config contains parameters for reading Thanos snapshots.
type Config struct {
Snapshot string
Filter Filter
}
// Filter contains configuration for filtering the timeseries.
type Filter struct {
TimeMin string
TimeMax string
Label string
LabelValue string
}
// Client reads Thanos snapshot blocks, including downsampled blocks with AggrChunk encoding.
type Client struct {
snapshotPath string
filter filter
statsPrinted bool
}
type filter struct {
min, max int64
label string
labelValue string
}
func (f filter) inRange(minV, maxV int64) bool {
fmin, fmax := f.min, f.max
if fmin == 0 {
fmin = minV
}
if fmax == 0 {
fmax = maxV
}
return minV <= fmax && fmin <= maxV
}
// NewClient creates a new Thanos snapshot client.
func NewClient(cfg Config) (*Client, error) {
minTime, maxTime, err := parseTime(cfg.Filter.TimeMin, cfg.Filter.TimeMax)
if err != nil {
return nil, fmt.Errorf("failed to parse time in filter: %s", err)
}
return &Client{
snapshotPath: cfg.Snapshot,
filter: filter{
min: minTime,
max: maxTime,
label: cfg.Filter.Label,
labelValue: cfg.Filter.LabelValue,
},
}, nil
}
// Explore fetches all available blocks from the snapshot with support for
// Thanos AggrChunk (downsampled blocks). It opens blocks with a custom pool
// that can decode AggrChunk encoding (0xff).
func (c *Client) Explore(aggrType AggrType) ([]BlockInfo, error) {
blockInfos, err := OpenBlocksWithInfo(c.snapshotPath, aggrType)
if err != nil {
return nil, fmt.Errorf("failed to open blocks: %w", err)
}
s := &Stats{
Filtered: c.filter.min != 0 || c.filter.max != 0 || c.filter.label != "",
Blocks: len(blockInfos),
}
var blocksToImport []BlockInfo
for _, bi := range blockInfos {
meta := bi.Block.Meta()
if s.MinTime == 0 || meta.MinTime < s.MinTime {
s.MinTime = meta.MinTime
}
if s.MaxTime == 0 || meta.MaxTime > s.MaxTime {
s.MaxTime = meta.MaxTime
}
if !c.filter.inRange(meta.MinTime, meta.MaxTime) {
s.SkippedBlocks++
if bi.Closer != nil {
_ = bi.Closer.Close()
}
continue
}
s.Samples += meta.Stats.NumSamples
s.Series += meta.Stats.NumSeries
blocksToImport = append(blocksToImport, bi)
}
if !c.statsPrinted {
fmt.Println(s)
c.statsPrinted = true
}
return blocksToImport, nil
}
// querierSeriesSet wraps a SeriesSet and its underlying Querier, ensuring
// the querier is closed once the SeriesSet has been fully consumed.
// This releases the querier's read reference on the block, which is required
// for Block.Close() to complete without hanging.
type querierSeriesSet struct {
storage.SeriesSet
q storage.Querier
closed bool
}
// Next advances the iterator. When the underlying SeriesSet is exhausted,
// it closes the querier to release resources.
func (s *querierSeriesSet) Next() bool {
if s.SeriesSet.Next() {
return true
}
if !s.closed {
_ = s.q.Close()
s.closed = true
}
return false
}
// Close explicitly closes the underlying querier.
// This must be called if iteration is stopped early (before Next returns false)
// to release block read references and prevent Block.Close() from hanging.
func (s *querierSeriesSet) Close() {
if !s.closed {
_ = s.q.Close()
s.closed = true
}
}
// ClosableSeriesSet extends storage.SeriesSet with a Close method for explicit cleanup.
type ClosableSeriesSet interface {
storage.SeriesSet
Close()
}
// Read reads the given BlockInfo according to configured time and label filters.
// The returned ClosableSeriesSet automatically closes the underlying querier when fully consumed,
// but Close() should be called explicitly (e.g., via defer) to handle early returns.
func (c *Client) Read(bi BlockInfo) (ClosableSeriesSet, error) {
minTime, maxTime := bi.Block.Meta().MinTime, bi.Block.Meta().MaxTime
if c.filter.min != 0 {
minTime = c.filter.min
}
if c.filter.max != 0 {
maxTime = c.filter.max
}
q, err := tsdb.NewBlockQuerier(bi.Block, minTime, maxTime)
if err != nil {
return nil, err
}
ss := q.Select(
context.Background(),
false,
nil,
labels.MustNewMatcher(labels.MatchRegexp, c.filter.label, c.filter.labelValue),
)
return &querierSeriesSet{
SeriesSet: ss,
q: q,
}, nil
}
func parseTime(start, end string) (int64, int64, error) {
var s, e int64
if start == "" && end == "" {
return 0, 0, nil
}
if start != "" {
v, err := time.Parse(time.RFC3339, start)
if err != nil {
return 0, 0, fmt.Errorf("failed to parse %q: %s", start, err)
}
s = v.UnixNano() / int64(time.Millisecond)
}
if end != "" {
v, err := time.Parse(time.RFC3339, end)
if err != nil {
return 0, 0, fmt.Errorf("failed to parse %q: %s", end, err)
}
e = v.UnixNano() / int64(time.Millisecond)
}
return s, e, nil
}

View File

@@ -1,38 +0,0 @@
package thanos
import (
"fmt"
"time"
)
// Stats represents data migration stats for Thanos blocks.
type Stats struct {
Filtered bool
MinTime int64
MaxTime int64
Samples uint64
Series uint64
Blocks int
SkippedBlocks int
}
// String returns string representation for s.
func (s Stats) String() string {
str := fmt.Sprintf("Thanos snapshot stats:\n"+
" blocks found: %d;\n"+
" blocks skipped by time filter: %d;\n"+
" min time: %d (%v);\n"+
" max time: %d (%v);\n"+
" samples: %d;\n"+
" series: %d.",
s.Blocks, s.SkippedBlocks,
s.MinTime, time.Unix(s.MinTime/1e3, 0).Format(time.RFC3339),
s.MaxTime, time.Unix(s.MaxTime/1e3, 0).Format(time.RFC3339),
s.Samples, s.Series)
if s.Filtered {
str += "\n* Stats numbers are based on blocks meta info and don't account for applied filters."
}
return str
}

View File

@@ -1,309 +0,0 @@
package main
import (
"context"
"fmt"
"log"
"strings"
"sync"
"github.com/prometheus/prometheus/model/labels"
"github.com/prometheus/prometheus/tsdb/chunkenc"
"github.com/VictoriaMetrics/metrics"
"github.com/VictoriaMetrics/VictoriaMetrics/app/vmctl/barpool"
"github.com/VictoriaMetrics/VictoriaMetrics/app/vmctl/thanos"
"github.com/VictoriaMetrics/VictoriaMetrics/app/vmctl/vm"
)
type thanosProcessor struct {
cl *thanos.Client
im *vm.Importer
cc int
isVerbose bool
aggrTypes []thanos.AggrType
}
func (tp *thanosProcessor) run(ctx context.Context) error {
if len(tp.aggrTypes) == 0 {
tp.aggrTypes = thanos.AllAggrTypes
}
log.Printf("Processing blocks with aggregate types: %v", tp.aggrTypes)
// Use the first aggregate type to explore blocks (block list is the same for all types)
blocks, err := tp.cl.Explore(tp.aggrTypes[0])
if err != nil {
return fmt.Errorf("explore failed: %s", err)
}
if len(blocks) < 1 {
return fmt.Errorf("found no blocks to import")
}
// Separate blocks into raw (resolution=0) and downsampled (resolution>0)
var rawBlocks, downsampledBlocks []thanos.BlockInfo
for _, block := range blocks {
if block.Resolution == thanos.ResolutionRaw {
rawBlocks = append(rawBlocks, block)
} else {
downsampledBlocks = append(downsampledBlocks, block)
}
}
log.Printf("Found %d raw blocks and %d downsampled blocks", len(rawBlocks), len(downsampledBlocks))
question := fmt.Sprintf("Found %d blocks to import (%d raw + %d downsampled with %d aggregate types). Continue?",
len(blocks), len(rawBlocks), len(downsampledBlocks), len(tp.aggrTypes))
if !prompt(ctx, question) {
return nil
}
// Calculate total number of block processing passes for the progress bar:
// raw blocks are processed once, downsampled blocks are processed once per aggregate type.
totalPasses := len(rawBlocks) + len(downsampledBlocks)*len(tp.aggrTypes)
thanosBlocksTotal.Add(totalPasses)
bar := barpool.AddWithTemplate(fmt.Sprintf(barTpl, "Processing blocks"), totalPasses)
if err := barpool.Start(); err != nil {
return err
}
defer barpool.Stop()
tp.im.ResetStats()
type phaseStats struct {
name string
series uint64
samples uint64
}
var phases []phaseStats
// Process raw blocks first (no aggregate suffix)
if len(rawBlocks) > 0 {
log.Println("Processing raw blocks (resolution=0)...")
stats, err := tp.processBlocks(rawBlocks, thanos.AggrTypeNone, bar)
if err != nil {
return fmt.Errorf("migration failed for raw blocks: %s", err)
}
phases = append(phases, phaseStats{
name: "raw",
series: stats.series,
samples: stats.samples,
})
}
// Close blocks from the initial Explore. The querierSeriesSet wrapper
// has already released all querier read references, so Close won't hang.
thanos.CloseBlocks(blocks)
// Process downsampled blocks for each aggregate type.
// Each type needs its own AggrChunkPool, so we reopen blocks per type.
for _, aggrType := range tp.aggrTypes {
if len(downsampledBlocks) < 1 {
break
}
log.Printf("Processing downsampled blocks with aggregate type: %s", aggrType)
aggrBlocks, err := tp.cl.Explore(aggrType)
if err != nil {
return fmt.Errorf("explore failed for aggr type %s: %s", aggrType, err)
}
var downsampledOnly []thanos.BlockInfo
for _, block := range aggrBlocks {
if block.Resolution != thanos.ResolutionRaw {
downsampledOnly = append(downsampledOnly, block)
}
}
if len(downsampledOnly) < 1 {
log.Printf("No downsampled blocks found for aggregate type %s, skipping", aggrType)
thanos.CloseBlocks(aggrBlocks)
continue
}
log.Printf("Processing %d blocks for aggregate type: %s", len(downsampledOnly), aggrType)
stats, err := tp.processBlocks(downsampledOnly, aggrType, bar)
thanos.CloseBlocks(aggrBlocks)
if err != nil {
return fmt.Errorf("migration failed for aggr type %s: %s", aggrType, err)
}
phases = append(phases, phaseStats{
name: aggrType.String(),
series: stats.series,
samples: stats.samples,
})
}
// Print per-phase and total statistics
var totalSeries, totalSamples uint64
log.Printf("Migration statistics (%d raw blocks, %d downsampled blocks):", len(rawBlocks), len(downsampledBlocks))
for _, p := range phases {
log.Printf(" %s: %d series, %d samples", p.name, p.series, p.samples)
totalSeries += p.series
totalSamples += p.samples
}
log.Printf(" total: %d series, %d samples", totalSeries, totalSamples)
// Wait for all buffers to flush
tp.im.Close()
// Drain import errors channel
for vmErr := range tp.im.Errors() {
if vmErr.Err != nil {
thanosErrorsTotal.Inc()
return fmt.Errorf("import process failed: %s", wrapErr(vmErr, tp.isVerbose))
}
}
log.Println("Import finished!")
log.Println(tp.im.Stats())
return nil
}
// processBlocksStats holds statistics collected during block processing.
type processBlocksStats struct {
blocks uint64
series uint64
samples uint64
}
func (tp *thanosProcessor) processBlocks(blocks []thanos.BlockInfo, aggrType thanos.AggrType, bar barpool.Bar) (processBlocksStats, error) {
blockReadersCh := make(chan thanos.BlockInfo)
errCh := make(chan error, tp.cc)
var processedBlocks, totalSeries, totalSamples uint64
var mu sync.Mutex
var wg sync.WaitGroup
for i := range tp.cc {
workerID := i
wg.Go(func() {
for bi := range blockReadersCh {
seriesCount, samplesCount, err := tp.do(bi, aggrType)
if err != nil {
thanosErrorsTotal.Inc()
errCh <- fmt.Errorf("read failed for block %q with aggr %s: %s", bi.Block.Meta().ULID, aggrType, err)
return
}
mu.Lock()
processedBlocks++
totalSeries += seriesCount
totalSamples += samplesCount
log.Printf("[Worker %d] Block %s: %d series, %d samples | Total: %d/%d blocks, %d series, %d samples",
workerID, bi.Block.Meta().ULID.String()[:8], seriesCount, samplesCount,
processedBlocks, len(blocks), totalSeries, totalSamples)
mu.Unlock()
thanosBlocksProcessed.Inc()
bar.Increment()
}
})
}
// any error breaks the import
for _, bi := range blocks {
select {
case thanosErr := <-errCh:
close(blockReadersCh)
wg.Wait()
return processBlocksStats{}, fmt.Errorf("thanos error: %s", thanosErr)
case vmErr := <-tp.im.Errors():
close(blockReadersCh)
wg.Wait()
thanosErrorsTotal.Inc()
return processBlocksStats{}, fmt.Errorf("import process failed: %s", wrapErr(vmErr, tp.isVerbose))
case blockReadersCh <- bi:
}
}
close(blockReadersCh)
wg.Wait()
close(errCh)
for err := range errCh {
return processBlocksStats{}, fmt.Errorf("import process failed: %s", err)
}
return processBlocksStats{
blocks: processedBlocks,
series: totalSeries,
samples: totalSamples,
}, nil
}
func (tp *thanosProcessor) do(bi thanos.BlockInfo, aggrType thanos.AggrType) (uint64, uint64, error) {
ss, err := tp.cl.Read(bi)
if err != nil {
return 0, 0, fmt.Errorf("failed to read block: %s", err)
}
defer ss.Close() // Ensure querier is closed even on early returns
var it chunkenc.Iterator
var seriesCount, samplesCount uint64
for ss.Next() {
var name string
var labelPairs []vm.LabelPair
series := ss.At()
series.Labels().Range(func(label labels.Label) {
if label.Name == "__name__" {
name = label.Value
return
}
labelPairs = append(labelPairs, vm.LabelPair{
Name: strings.Clone(label.Name),
Value: strings.Clone(label.Value),
})
})
if name == "" {
return seriesCount, samplesCount, fmt.Errorf("failed to find `__name__` label in labelset for block %v", bi.Block.Meta().ULID)
}
// Add resolution and aggregate type suffix to metric name for downsampled blocks
if bi.Resolution != thanos.ResolutionRaw && aggrType != thanos.AggrTypeNone {
name = fmt.Sprintf("%s:%s:%s", name, bi.Resolution.String(), aggrType.String())
}
var timestamps []int64
var values []float64
it = series.Iterator(it)
for {
typ := it.Next()
if typ == chunkenc.ValNone {
break
}
if typ != chunkenc.ValFloat {
continue
}
t, v := it.At()
timestamps = append(timestamps, t)
values = append(values, v)
}
if err := it.Err(); err != nil {
return seriesCount, samplesCount, err
}
samplesCount += uint64(len(timestamps))
seriesCount++
ts := vm.TimeSeries{
Name: name,
LabelPairs: labelPairs,
Timestamps: timestamps,
Values: values,
}
if err := tp.im.Input(&ts); err != nil {
return seriesCount, samplesCount, err
}
}
return seriesCount, samplesCount, ss.Err()
}
var (
thanosBlocksTotal = metrics.NewCounter(`vmctl_thanos_migration_blocks_total`)
thanosBlocksProcessed = metrics.NewCounter(`vmctl_thanos_migration_blocks_processed`)
thanosErrorsTotal = metrics.NewCounter(`vmctl_thanos_migration_errors_total`)
)

View File

@@ -22,7 +22,6 @@ import (
"github.com/VictoriaMetrics/VictoriaMetrics/lib/fasttime"
"github.com/VictoriaMetrics/VictoriaMetrics/lib/querytracer"
"github.com/VictoriaMetrics/VictoriaMetrics/lib/storage"
"github.com/VictoriaMetrics/VictoriaMetrics/lib/storage/metricnamestats"
"github.com/VictoriaMetrics/VictoriaMetrics/lib/storage/metricsmetadata"
)
@@ -1363,7 +1362,7 @@ func applyGraphiteRegexpFilter(filter string, ss []string) ([]string, error) {
const maxFastAllocBlockSize = 32 * 1024
// GetMetricNamesStats returns statistic for timeseries metric names usage.
func GetMetricNamesStats(qt *querytracer.Tracer, limit, le int, matchPattern string) (metricnamestats.StatsResult, error) {
func GetMetricNamesStats(qt *querytracer.Tracer, limit, le int, matchPattern string) (storage.MetricNamesStatsResponse, error) {
qt = qt.NewChild("get metric names usage statistics with limit: %d, less or equal to: %d, match pattern=%q", limit, le, matchPattern)
defer qt.Done()
return vmstorage.GetMetricNamesStats(qt, limit, le, matchPattern)

View File

@@ -11,16 +11,6 @@
{% stripspace %}
{% func ExportCSVHeader(fieldNames []string) %}
{% if len(fieldNames) == 0 %}{% return %}{% endif %}
{%s= fieldNames[0] %}
{% for _, fieldName := range fieldNames[1:] %}
,
{%s= fieldName %}
{% endfor %}
{% newline %}
{% endfunc %}
{% func ExportCSVLine(xb *exportBlock, fieldNames []string) %}
{% if len(xb.timestamps) == 0 || len(fieldNames) == 0 %}{% return %}{% endif %}
{% for i, timestamp := range xb.timestamps %}

File diff suppressed because it is too large Load Diff

View File

@@ -1,132 +0,0 @@
package prometheus
import (
"strings"
"testing"
"time"
"github.com/VictoriaMetrics/VictoriaMetrics/lib/storage"
)
func TestExportCSVHeader(t *testing.T) {
f := func(fieldNames []string, expected string) {
t.Helper()
got := ExportCSVHeader(fieldNames)
if got != expected {
t.Fatalf("ExportCSVHeader(%v): got %q; want %q", fieldNames, got, expected)
}
}
f(nil, "")
f([]string{}, "")
f([]string{"__value__"}, "__value__\n")
f([]string{"__timestamp__"}, "__timestamp__\n")
f([]string{"__timestamp__:rfc3339"}, "__timestamp__:rfc3339\n")
f([]string{"__name__"}, "__name__\n")
f([]string{"job"}, "job\n")
f([]string{"__timestamp__:rfc3339", "__value__"}, "__timestamp__:rfc3339,__value__\n")
f([]string{"__value__", "__timestamp__"}, "__value__,__timestamp__\n")
f([]string{"job", "instance"}, "job,instance\n")
f([]string{"__name__", "__value__", "__timestamp__:unix_s"}, "__name__,__value__,__timestamp__:unix_s\n")
f([]string{"job", "instance", "__value__", "__timestamp__:unix_ms"}, "job,instance,__value__,__timestamp__:unix_ms\n")
f([]string{"__timestamp__:custom:2006-01-02", "__value__", "host", "dc", "env"},
"__timestamp__:custom:2006-01-02,__value__,host,dc,env\n")
// duplicate fields
f([]string{"__value__", "__value__"}, "__value__,__value__\n")
f([]string{"__timestamp__", "__timestamp__:rfc3339"}, "__timestamp__,__timestamp__:rfc3339\n")
}
func TestExportCSVLine(t *testing.T) {
localBak := time.Local
time.Local = time.UTC
defer func() { time.Local = localBak }()
f := func(mn *storage.MetricName, timestamps []int64, values []float64, fieldNames []string, expected string) {
t.Helper()
xb := &exportBlock{
mn: mn,
timestamps: timestamps,
values: values,
}
got := ExportCSVLine(xb, fieldNames)
if got != expected {
t.Fatalf("ExportCSVLine: got %q; want %q", got, expected)
}
}
mn := &storage.MetricName{
MetricGroup: []byte("cpu_usage"),
Tags: []storage.Tag{
{Key: []byte("job"), Value: []byte("node")},
{Key: []byte("instance"), Value: []byte("localhost:9090")},
},
}
// empty inputs
f(mn, nil, nil, []string{"__value__"}, "")
f(mn, []int64{}, []float64{}, []string{"__value__"}, "")
f(mn, []int64{1000}, []float64{1.5}, nil, "")
f(mn, []int64{1000}, []float64{1.5}, []string{}, "")
f(mn, []int64{1000}, []float64{42.5}, []string{"__value__"}, "42.5\n")
f(mn, []int64{1704067200000}, []float64{1}, []string{"__timestamp__"}, "1704067200000\n")
f(mn, []int64{1704067200000}, []float64{1}, []string{"__timestamp__:unix_s"}, "1704067200\n")
f(mn, []int64{1704067200000}, []float64{1}, []string{"__timestamp__:unix_ms"}, "1704067200000\n")
f(mn, []int64{1704067200000}, []float64{1}, []string{"__timestamp__:unix_ns"}, "1704067200000000000\n")
f(mn, []int64{1704067200000}, []float64{1}, []string{"__timestamp__:rfc3339"}, "2024-01-01T00:00:00Z\n")
f(mn, []int64{1000}, []float64{1}, []string{"__name__"}, "cpu_usage\n")
f(mn, []int64{1000}, []float64{1}, []string{"job"}, "node\n")
f(mn, []int64{1000}, []float64{1}, []string{"instance"}, "localhost:9090\n")
f(mn, []int64{1000}, []float64{1}, []string{"missing_label"}, "\n")
// multiple fields
f(mn, []int64{1704067200000}, []float64{99.9},
[]string{"__timestamp__:unix_s", "__value__", "job"},
"1704067200,99.9,node\n")
// multiple rows
f(mn, []int64{1000, 2000}, []float64{1.1, 2.2},
[]string{"__value__", "__timestamp__"},
"1.1,1000\n2.2,2000\n")
f(mn, []int64{1000, 2000, 3000}, []float64{10, 20, 30},
[]string{"__timestamp__:unix_s", "__value__"},
"1,10\n2,20\n3,30\n")
// escaping for special characters in tag values
f(&storage.MetricName{
MetricGroup: []byte("m"),
Tags: []storage.Tag{{Key: []byte("desc"), Value: []byte("a,b")}},
}, []int64{1000}, []float64{1}, []string{"desc"}, "\"a,b\"\n")
f(&storage.MetricName{
MetricGroup: []byte("m"),
Tags: []storage.Tag{{Key: []byte("desc"), Value: []byte(`say "hello"`)}},
}, []int64{1000}, []float64{1}, []string{"desc"}, "\"say \\\"hello\\\"\"\n")
f(&storage.MetricName{
MetricGroup: []byte("m"),
Tags: []storage.Tag{{Key: []byte("desc"), Value: []byte("line1\nline2")}},
}, []int64{1000}, []float64{1}, []string{"desc"}, "\"line1\\nline2\"\n")
// header and data line field counts must match
fieldNames := []string{"__name__", "job", "instance", "__value__", "__timestamp__:unix_s"}
header := ExportCSVHeader(fieldNames)
line := ExportCSVLine(&exportBlock{
mn: mn,
timestamps: []int64{1704067200000},
values: []float64{99.9},
}, fieldNames)
headerCommas := strings.Count(header, ",")
lineCommas := strings.Count(line, ",")
if headerCommas != lineCommas {
t.Fatalf("header has %d commas, data line has %d commas", headerCommas, lineCommas)
}
if headerCommas != len(fieldNames)-1 {
t.Fatalf("expected %d commas in header, got %d", len(fieldNames)-1, headerCommas)
}
}

View File

@@ -175,7 +175,6 @@ func ExportCSVHandler(startTime time.Time, w http.ResponseWriter, r *http.Reques
w.Header().Set("Content-Type", "text/csv; charset=utf-8")
bw := bufferedwriter.Get(w)
defer bufferedwriter.Put(bw)
WriteExportCSVHeader(bw, fieldNames)
sw := newScalableWriter(bw)
writeCSVLine := func(xb *exportBlock, workerID uint) error {
if len(xb.timestamps) == 0 {
@@ -1223,7 +1222,11 @@ func getCommonParamsInternal(r *http.Request, startTime time.Time, requireNonEmp
if err != nil {
return nil, err
}
maxTS := int64(math.MaxInt64 / 1_000_000)
// Limit the `end` arg to the current time +2 days in the same way
// as it is limited during data ingestion.
// See https://github.com/VictoriaMetrics/VictoriaMetrics/blob/ea06d2fd3ccbbb6aa4480ab3b04f7b671408be2a/lib/storage/table.go#L378
// This should fix possible timestamp overflow - see https://github.com/VictoriaMetrics/VictoriaMetrics/issues/2669
maxTS := startTime.UnixNano()/1e6 + 2*24*3600*1000
if end > maxTS {
end = maxTS
}

View File

@@ -1,7 +1,6 @@
{% import (
"github.com/VictoriaMetrics/VictoriaMetrics/lib/querytracer"
"github.com/VictoriaMetrics/VictoriaMetrics/lib/storage"
"github.com/VictoriaMetrics/VictoriaMetrics/lib/storage/metricnamestats"
) %}
{% stripspace %}
@@ -35,9 +34,9 @@ TSDBStatusResponse generates response for /api/v1/status/tsdb .
]
{% endfunc %}
{% func tsdbStatusMetricNameEntries(a []storage.TopHeapEntry, queryStats []metricnamestats.StatRecord) %}
{% func tsdbStatusMetricNameEntries(a []storage.TopHeapEntry, queryStats []storage.MetricNamesStatsRecord) %}
{% code
queryStatsByMetricName := make(map[string]metricnamestats.StatRecord,len(queryStats))
queryStatsByMetricName := make(map[string]storage.MetricNamesStatsRecord,len(queryStats))
for _, record := range queryStats{
queryStatsByMetricName[record.MetricName] = record
}

View File

@@ -8,229 +8,228 @@ package prometheus
import (
"github.com/VictoriaMetrics/VictoriaMetrics/lib/querytracer"
"github.com/VictoriaMetrics/VictoriaMetrics/lib/storage"
"github.com/VictoriaMetrics/VictoriaMetrics/lib/storage/metricnamestats"
)
// TSDBStatusResponse generates response for /api/v1/status/tsdb .
//line app/vmselect/prometheus/tsdb_status_response.qtpl:9
//line app/vmselect/prometheus/tsdb_status_response.qtpl:8
import (
qtio422016 "io"
qt422016 "github.com/valyala/quicktemplate"
)
//line app/vmselect/prometheus/tsdb_status_response.qtpl:9
//line app/vmselect/prometheus/tsdb_status_response.qtpl:8
var (
_ = qtio422016.Copy
_ = qt422016.AcquireByteBuffer
)
//line app/vmselect/prometheus/tsdb_status_response.qtpl:9
//line app/vmselect/prometheus/tsdb_status_response.qtpl:8
func StreamTSDBStatusResponse(qw422016 *qt422016.Writer, status *storage.TSDBStatus, qt *querytracer.Tracer) {
//line app/vmselect/prometheus/tsdb_status_response.qtpl:9
//line app/vmselect/prometheus/tsdb_status_response.qtpl:8
qw422016.N().S(`{"status":"success","data":{"totalSeries":`)
//line app/vmselect/prometheus/tsdb_status_response.qtpl:13
//line app/vmselect/prometheus/tsdb_status_response.qtpl:12
qw422016.N().DUL(status.TotalSeries)
//line app/vmselect/prometheus/tsdb_status_response.qtpl:13
//line app/vmselect/prometheus/tsdb_status_response.qtpl:12
qw422016.N().S(`,"totalLabelValuePairs":`)
//line app/vmselect/prometheus/tsdb_status_response.qtpl:14
//line app/vmselect/prometheus/tsdb_status_response.qtpl:13
qw422016.N().DUL(status.TotalLabelValuePairs)
//line app/vmselect/prometheus/tsdb_status_response.qtpl:14
//line app/vmselect/prometheus/tsdb_status_response.qtpl:13
qw422016.N().S(`,"seriesCountByMetricName":`)
//line app/vmselect/prometheus/tsdb_status_response.qtpl:15
//line app/vmselect/prometheus/tsdb_status_response.qtpl:14
streamtsdbStatusMetricNameEntries(qw422016, status.SeriesCountByMetricName, status.SeriesQueryStatsByMetricName)
//line app/vmselect/prometheus/tsdb_status_response.qtpl:15
//line app/vmselect/prometheus/tsdb_status_response.qtpl:14
qw422016.N().S(`,"seriesCountByLabelName":`)
//line app/vmselect/prometheus/tsdb_status_response.qtpl:16
//line app/vmselect/prometheus/tsdb_status_response.qtpl:15
streamtsdbStatusEntries(qw422016, status.SeriesCountByLabelName)
//line app/vmselect/prometheus/tsdb_status_response.qtpl:16
//line app/vmselect/prometheus/tsdb_status_response.qtpl:15
qw422016.N().S(`,"seriesCountByFocusLabelValue":`)
//line app/vmselect/prometheus/tsdb_status_response.qtpl:17
//line app/vmselect/prometheus/tsdb_status_response.qtpl:16
streamtsdbStatusEntries(qw422016, status.SeriesCountByFocusLabelValue)
//line app/vmselect/prometheus/tsdb_status_response.qtpl:17
//line app/vmselect/prometheus/tsdb_status_response.qtpl:16
qw422016.N().S(`,"seriesCountByLabelValuePair":`)
//line app/vmselect/prometheus/tsdb_status_response.qtpl:18
//line app/vmselect/prometheus/tsdb_status_response.qtpl:17
streamtsdbStatusEntries(qw422016, status.SeriesCountByLabelValuePair)
//line app/vmselect/prometheus/tsdb_status_response.qtpl:18
//line app/vmselect/prometheus/tsdb_status_response.qtpl:17
qw422016.N().S(`,"labelValueCountByLabelName":`)
//line app/vmselect/prometheus/tsdb_status_response.qtpl:19
//line app/vmselect/prometheus/tsdb_status_response.qtpl:18
streamtsdbStatusEntries(qw422016, status.LabelValueCountByLabelName)
//line app/vmselect/prometheus/tsdb_status_response.qtpl:19
//line app/vmselect/prometheus/tsdb_status_response.qtpl:18
qw422016.N().S(`}`)
//line app/vmselect/prometheus/tsdb_status_response.qtpl:21
//line app/vmselect/prometheus/tsdb_status_response.qtpl:20
qt.Done()
//line app/vmselect/prometheus/tsdb_status_response.qtpl:22
//line app/vmselect/prometheus/tsdb_status_response.qtpl:21
streamdumpQueryTrace(qw422016, qt)
//line app/vmselect/prometheus/tsdb_status_response.qtpl:22
//line app/vmselect/prometheus/tsdb_status_response.qtpl:21
qw422016.N().S(`}`)
//line app/vmselect/prometheus/tsdb_status_response.qtpl:24
//line app/vmselect/prometheus/tsdb_status_response.qtpl:23
}
//line app/vmselect/prometheus/tsdb_status_response.qtpl:24
//line app/vmselect/prometheus/tsdb_status_response.qtpl:23
func WriteTSDBStatusResponse(qq422016 qtio422016.Writer, status *storage.TSDBStatus, qt *querytracer.Tracer) {
//line app/vmselect/prometheus/tsdb_status_response.qtpl:24
//line app/vmselect/prometheus/tsdb_status_response.qtpl:23
qw422016 := qt422016.AcquireWriter(qq422016)
//line app/vmselect/prometheus/tsdb_status_response.qtpl:24
//line app/vmselect/prometheus/tsdb_status_response.qtpl:23
StreamTSDBStatusResponse(qw422016, status, qt)
//line app/vmselect/prometheus/tsdb_status_response.qtpl:24
//line app/vmselect/prometheus/tsdb_status_response.qtpl:23
qt422016.ReleaseWriter(qw422016)
//line app/vmselect/prometheus/tsdb_status_response.qtpl:24
//line app/vmselect/prometheus/tsdb_status_response.qtpl:23
}
//line app/vmselect/prometheus/tsdb_status_response.qtpl:24
//line app/vmselect/prometheus/tsdb_status_response.qtpl:23
func TSDBStatusResponse(status *storage.TSDBStatus, qt *querytracer.Tracer) string {
//line app/vmselect/prometheus/tsdb_status_response.qtpl:24
//line app/vmselect/prometheus/tsdb_status_response.qtpl:23
qb422016 := qt422016.AcquireByteBuffer()
//line app/vmselect/prometheus/tsdb_status_response.qtpl:24
//line app/vmselect/prometheus/tsdb_status_response.qtpl:23
WriteTSDBStatusResponse(qb422016, status, qt)
//line app/vmselect/prometheus/tsdb_status_response.qtpl:24
//line app/vmselect/prometheus/tsdb_status_response.qtpl:23
qs422016 := string(qb422016.B)
//line app/vmselect/prometheus/tsdb_status_response.qtpl:24
//line app/vmselect/prometheus/tsdb_status_response.qtpl:23
qt422016.ReleaseByteBuffer(qb422016)
//line app/vmselect/prometheus/tsdb_status_response.qtpl:24
//line app/vmselect/prometheus/tsdb_status_response.qtpl:23
return qs422016
//line app/vmselect/prometheus/tsdb_status_response.qtpl:24
//line app/vmselect/prometheus/tsdb_status_response.qtpl:23
}
//line app/vmselect/prometheus/tsdb_status_response.qtpl:26
//line app/vmselect/prometheus/tsdb_status_response.qtpl:25
func streamtsdbStatusEntries(qw422016 *qt422016.Writer, a []storage.TopHeapEntry) {
//line app/vmselect/prometheus/tsdb_status_response.qtpl:26
//line app/vmselect/prometheus/tsdb_status_response.qtpl:25
qw422016.N().S(`[`)
//line app/vmselect/prometheus/tsdb_status_response.qtpl:28
//line app/vmselect/prometheus/tsdb_status_response.qtpl:27
for i, e := range a {
//line app/vmselect/prometheus/tsdb_status_response.qtpl:28
//line app/vmselect/prometheus/tsdb_status_response.qtpl:27
qw422016.N().S(`{"name":`)
//line app/vmselect/prometheus/tsdb_status_response.qtpl:30
//line app/vmselect/prometheus/tsdb_status_response.qtpl:29
qw422016.N().Q(e.Name)
//line app/vmselect/prometheus/tsdb_status_response.qtpl:30
//line app/vmselect/prometheus/tsdb_status_response.qtpl:29
qw422016.N().S(`,"value":`)
//line app/vmselect/prometheus/tsdb_status_response.qtpl:31
//line app/vmselect/prometheus/tsdb_status_response.qtpl:30
qw422016.N().D(int(e.Count))
//line app/vmselect/prometheus/tsdb_status_response.qtpl:31
//line app/vmselect/prometheus/tsdb_status_response.qtpl:30
qw422016.N().S(`}`)
//line app/vmselect/prometheus/tsdb_status_response.qtpl:33
//line app/vmselect/prometheus/tsdb_status_response.qtpl:32
if i+1 < len(a) {
//line app/vmselect/prometheus/tsdb_status_response.qtpl:33
//line app/vmselect/prometheus/tsdb_status_response.qtpl:32
qw422016.N().S(`,`)
//line app/vmselect/prometheus/tsdb_status_response.qtpl:33
//line app/vmselect/prometheus/tsdb_status_response.qtpl:32
}
//line app/vmselect/prometheus/tsdb_status_response.qtpl:34
//line app/vmselect/prometheus/tsdb_status_response.qtpl:33
}
//line app/vmselect/prometheus/tsdb_status_response.qtpl:34
//line app/vmselect/prometheus/tsdb_status_response.qtpl:33
qw422016.N().S(`]`)
//line app/vmselect/prometheus/tsdb_status_response.qtpl:36
//line app/vmselect/prometheus/tsdb_status_response.qtpl:35
}
//line app/vmselect/prometheus/tsdb_status_response.qtpl:36
//line app/vmselect/prometheus/tsdb_status_response.qtpl:35
func writetsdbStatusEntries(qq422016 qtio422016.Writer, a []storage.TopHeapEntry) {
//line app/vmselect/prometheus/tsdb_status_response.qtpl:36
//line app/vmselect/prometheus/tsdb_status_response.qtpl:35
qw422016 := qt422016.AcquireWriter(qq422016)
//line app/vmselect/prometheus/tsdb_status_response.qtpl:36
//line app/vmselect/prometheus/tsdb_status_response.qtpl:35
streamtsdbStatusEntries(qw422016, a)
//line app/vmselect/prometheus/tsdb_status_response.qtpl:36
//line app/vmselect/prometheus/tsdb_status_response.qtpl:35
qt422016.ReleaseWriter(qw422016)
//line app/vmselect/prometheus/tsdb_status_response.qtpl:36
//line app/vmselect/prometheus/tsdb_status_response.qtpl:35
}
//line app/vmselect/prometheus/tsdb_status_response.qtpl:36
//line app/vmselect/prometheus/tsdb_status_response.qtpl:35
func tsdbStatusEntries(a []storage.TopHeapEntry) string {
//line app/vmselect/prometheus/tsdb_status_response.qtpl:36
//line app/vmselect/prometheus/tsdb_status_response.qtpl:35
qb422016 := qt422016.AcquireByteBuffer()
//line app/vmselect/prometheus/tsdb_status_response.qtpl:36
//line app/vmselect/prometheus/tsdb_status_response.qtpl:35
writetsdbStatusEntries(qb422016, a)
//line app/vmselect/prometheus/tsdb_status_response.qtpl:36
//line app/vmselect/prometheus/tsdb_status_response.qtpl:35
qs422016 := string(qb422016.B)
//line app/vmselect/prometheus/tsdb_status_response.qtpl:36
//line app/vmselect/prometheus/tsdb_status_response.qtpl:35
qt422016.ReleaseByteBuffer(qb422016)
//line app/vmselect/prometheus/tsdb_status_response.qtpl:36
//line app/vmselect/prometheus/tsdb_status_response.qtpl:35
return qs422016
//line app/vmselect/prometheus/tsdb_status_response.qtpl:36
//line app/vmselect/prometheus/tsdb_status_response.qtpl:35
}
//line app/vmselect/prometheus/tsdb_status_response.qtpl:38
func streamtsdbStatusMetricNameEntries(qw422016 *qt422016.Writer, a []storage.TopHeapEntry, queryStats []metricnamestats.StatRecord) {
//line app/vmselect/prometheus/tsdb_status_response.qtpl:40
queryStatsByMetricName := make(map[string]metricnamestats.StatRecord, len(queryStats))
//line app/vmselect/prometheus/tsdb_status_response.qtpl:37
func streamtsdbStatusMetricNameEntries(qw422016 *qt422016.Writer, a []storage.TopHeapEntry, queryStats []storage.MetricNamesStatsRecord) {
//line app/vmselect/prometheus/tsdb_status_response.qtpl:39
queryStatsByMetricName := make(map[string]storage.MetricNamesStatsRecord, len(queryStats))
for _, record := range queryStats {
queryStatsByMetricName[record.MetricName] = record
}
//line app/vmselect/prometheus/tsdb_status_response.qtpl:44
//line app/vmselect/prometheus/tsdb_status_response.qtpl:43
qw422016.N().S(`[`)
//line app/vmselect/prometheus/tsdb_status_response.qtpl:46
//line app/vmselect/prometheus/tsdb_status_response.qtpl:45
for i, e := range a {
//line app/vmselect/prometheus/tsdb_status_response.qtpl:46
//line app/vmselect/prometheus/tsdb_status_response.qtpl:45
qw422016.N().S(`{`)
//line app/vmselect/prometheus/tsdb_status_response.qtpl:49
//line app/vmselect/prometheus/tsdb_status_response.qtpl:48
entry, ok := queryStatsByMetricName[e.Name]
//line app/vmselect/prometheus/tsdb_status_response.qtpl:50
//line app/vmselect/prometheus/tsdb_status_response.qtpl:49
qw422016.N().S(`"name":`)
//line app/vmselect/prometheus/tsdb_status_response.qtpl:51
//line app/vmselect/prometheus/tsdb_status_response.qtpl:50
qw422016.N().Q(e.Name)
//line app/vmselect/prometheus/tsdb_status_response.qtpl:51
//line app/vmselect/prometheus/tsdb_status_response.qtpl:50
qw422016.N().S(`,`)
//line app/vmselect/prometheus/tsdb_status_response.qtpl:52
//line app/vmselect/prometheus/tsdb_status_response.qtpl:51
if !ok {
//line app/vmselect/prometheus/tsdb_status_response.qtpl:51
qw422016.N().S(`"value":`)
//line app/vmselect/prometheus/tsdb_status_response.qtpl:52
qw422016.N().S(`"value":`)
qw422016.N().D(int(e.Count))
//line app/vmselect/prometheus/tsdb_status_response.qtpl:53
qw422016.N().D(int(e.Count))
//line app/vmselect/prometheus/tsdb_status_response.qtpl:54
} else {
//line app/vmselect/prometheus/tsdb_status_response.qtpl:54
//line app/vmselect/prometheus/tsdb_status_response.qtpl:53
qw422016.N().S(`"value":`)
//line app/vmselect/prometheus/tsdb_status_response.qtpl:55
//line app/vmselect/prometheus/tsdb_status_response.qtpl:54
qw422016.N().D(int(e.Count))
//line app/vmselect/prometheus/tsdb_status_response.qtpl:55
//line app/vmselect/prometheus/tsdb_status_response.qtpl:54
qw422016.N().S(`,"requestsCount":`)
//line app/vmselect/prometheus/tsdb_status_response.qtpl:56
//line app/vmselect/prometheus/tsdb_status_response.qtpl:55
qw422016.N().D(int(entry.RequestsCount))
//line app/vmselect/prometheus/tsdb_status_response.qtpl:56
//line app/vmselect/prometheus/tsdb_status_response.qtpl:55
qw422016.N().S(`,"lastRequestTimestamp":`)
//line app/vmselect/prometheus/tsdb_status_response.qtpl:57
//line app/vmselect/prometheus/tsdb_status_response.qtpl:56
qw422016.N().D(int(entry.LastRequestTs))
//line app/vmselect/prometheus/tsdb_status_response.qtpl:58
//line app/vmselect/prometheus/tsdb_status_response.qtpl:57
}
//line app/vmselect/prometheus/tsdb_status_response.qtpl:58
//line app/vmselect/prometheus/tsdb_status_response.qtpl:57
qw422016.N().S(`}`)
//line app/vmselect/prometheus/tsdb_status_response.qtpl:60
//line app/vmselect/prometheus/tsdb_status_response.qtpl:59
if i+1 < len(a) {
//line app/vmselect/prometheus/tsdb_status_response.qtpl:60
//line app/vmselect/prometheus/tsdb_status_response.qtpl:59
qw422016.N().S(`,`)
//line app/vmselect/prometheus/tsdb_status_response.qtpl:60
//line app/vmselect/prometheus/tsdb_status_response.qtpl:59
}
//line app/vmselect/prometheus/tsdb_status_response.qtpl:61
//line app/vmselect/prometheus/tsdb_status_response.qtpl:60
}
//line app/vmselect/prometheus/tsdb_status_response.qtpl:61
//line app/vmselect/prometheus/tsdb_status_response.qtpl:60
qw422016.N().S(`]`)
//line app/vmselect/prometheus/tsdb_status_response.qtpl:63
//line app/vmselect/prometheus/tsdb_status_response.qtpl:62
}
//line app/vmselect/prometheus/tsdb_status_response.qtpl:63
func writetsdbStatusMetricNameEntries(qq422016 qtio422016.Writer, a []storage.TopHeapEntry, queryStats []metricnamestats.StatRecord) {
//line app/vmselect/prometheus/tsdb_status_response.qtpl:63
//line app/vmselect/prometheus/tsdb_status_response.qtpl:62
func writetsdbStatusMetricNameEntries(qq422016 qtio422016.Writer, a []storage.TopHeapEntry, queryStats []storage.MetricNamesStatsRecord) {
//line app/vmselect/prometheus/tsdb_status_response.qtpl:62
qw422016 := qt422016.AcquireWriter(qq422016)
//line app/vmselect/prometheus/tsdb_status_response.qtpl:63
//line app/vmselect/prometheus/tsdb_status_response.qtpl:62
streamtsdbStatusMetricNameEntries(qw422016, a, queryStats)
//line app/vmselect/prometheus/tsdb_status_response.qtpl:63
//line app/vmselect/prometheus/tsdb_status_response.qtpl:62
qt422016.ReleaseWriter(qw422016)
//line app/vmselect/prometheus/tsdb_status_response.qtpl:63
//line app/vmselect/prometheus/tsdb_status_response.qtpl:62
}
//line app/vmselect/prometheus/tsdb_status_response.qtpl:63
func tsdbStatusMetricNameEntries(a []storage.TopHeapEntry, queryStats []metricnamestats.StatRecord) string {
//line app/vmselect/prometheus/tsdb_status_response.qtpl:63
//line app/vmselect/prometheus/tsdb_status_response.qtpl:62
func tsdbStatusMetricNameEntries(a []storage.TopHeapEntry, queryStats []storage.MetricNamesStatsRecord) string {
//line app/vmselect/prometheus/tsdb_status_response.qtpl:62
qb422016 := qt422016.AcquireByteBuffer()
//line app/vmselect/prometheus/tsdb_status_response.qtpl:63
//line app/vmselect/prometheus/tsdb_status_response.qtpl:62
writetsdbStatusMetricNameEntries(qb422016, a, queryStats)
//line app/vmselect/prometheus/tsdb_status_response.qtpl:63
//line app/vmselect/prometheus/tsdb_status_response.qtpl:62
qs422016 := string(qb422016.B)
//line app/vmselect/prometheus/tsdb_status_response.qtpl:63
//line app/vmselect/prometheus/tsdb_status_response.qtpl:62
qt422016.ReleaseByteBuffer(qb422016)
//line app/vmselect/prometheus/tsdb_status_response.qtpl:63
//line app/vmselect/prometheus/tsdb_status_response.qtpl:62
return qs422016
//line app/vmselect/prometheus/tsdb_status_response.qtpl:63
//line app/vmselect/prometheus/tsdb_status_response.qtpl:62
}

View File

@@ -1,11 +1,11 @@
{% import (
"github.com/VictoriaMetrics/VictoriaMetrics/lib/querytracer"
"github.com/VictoriaMetrics/VictoriaMetrics/lib/storage/metricnamestats"
"github.com/VictoriaMetrics/VictoriaMetrics/lib/storage"
) %}
{% stripspace %}
MetricNamesStatsResponse generates response for /api/v1/status/metric_names_stats .
{% func MetricNamesStatsResponse(stats *metricnamestats.StatsResult, qt *querytracer.Tracer) %}
{% func MetricNamesStatsResponse(stats *storage.MetricNamesStatsResponse, qt *querytracer.Tracer) %}
{
"status":"success",
"statsCollectedSince": {%dul= stats.CollectedSinceTs %},

View File

@@ -7,7 +7,7 @@ package stats
//line app/vmselect/stats/metric_names_usage_response.qtpl:1
import (
"github.com/VictoriaMetrics/VictoriaMetrics/lib/querytracer"
"github.com/VictoriaMetrics/VictoriaMetrics/lib/storage/metricnamestats"
"github.com/VictoriaMetrics/VictoriaMetrics/lib/storage"
)
// MetricNamesStatsResponse generates response for /api/v1/status/metric_names_stats .
@@ -26,7 +26,7 @@ var (
)
//line app/vmselect/stats/metric_names_usage_response.qtpl:8
func StreamMetricNamesStatsResponse(qw422016 *qt422016.Writer, stats *metricnamestats.StatsResult, qt *querytracer.Tracer) {
func StreamMetricNamesStatsResponse(qw422016 *qt422016.Writer, stats *storage.MetricNamesStatsResponse, qt *querytracer.Tracer) {
//line app/vmselect/stats/metric_names_usage_response.qtpl:8
qw422016.N().S(`{"status":"success","statsCollectedSince":`)
//line app/vmselect/stats/metric_names_usage_response.qtpl:11
@@ -91,7 +91,7 @@ func StreamMetricNamesStatsResponse(qw422016 *qt422016.Writer, stats *metricname
}
//line app/vmselect/stats/metric_names_usage_response.qtpl:31
func WriteMetricNamesStatsResponse(qq422016 qtio422016.Writer, stats *metricnamestats.StatsResult, qt *querytracer.Tracer) {
func WriteMetricNamesStatsResponse(qq422016 qtio422016.Writer, stats *storage.MetricNamesStatsResponse, qt *querytracer.Tracer) {
//line app/vmselect/stats/metric_names_usage_response.qtpl:31
qw422016 := qt422016.AcquireWriter(qq422016)
//line app/vmselect/stats/metric_names_usage_response.qtpl:31
@@ -102,7 +102,7 @@ func WriteMetricNamesStatsResponse(qq422016 qtio422016.Writer, stats *metricname
}
//line app/vmselect/stats/metric_names_usage_response.qtpl:31
func MetricNamesStatsResponse(stats *metricnamestats.StatsResult, qt *querytracer.Tracer) string {
func MetricNamesStatsResponse(stats *storage.MetricNamesStatsResponse, qt *querytracer.Tracer) string {
//line app/vmselect/stats/metric_names_usage_response.qtpl:31
qb422016 := qt422016.AcquireByteBuffer()
//line app/vmselect/stats/metric_names_usage_response.qtpl:31

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@@ -37,9 +37,9 @@
<meta property="og:title" content="UI for VictoriaMetrics">
<meta property="og:url" content="https://victoriametrics.com/">
<meta property="og:description" content="Explore and troubleshoot your VictoriaMetrics data">
<script type="module" crossorigin src="./assets/index-fsxQMWD9.js"></script>
<script type="module" crossorigin src="./assets/index-KEOgEEMl.js"></script>
<link rel="modulepreload" crossorigin href="./assets/rolldown-runtime-COnpUsM8.js">
<link rel="modulepreload" crossorigin href="./assets/vendor-BF3F25aG.js">
<link rel="modulepreload" crossorigin href="./assets/vendor-Mr0bmX1E.js">
<link rel="stylesheet" crossorigin href="./assets/vendor-CnsZ1jie.css">
<link rel="stylesheet" crossorigin href="./assets/index-D2OEy8Ra.css">
</head>

View File

@@ -5,7 +5,6 @@ import (
"flag"
"fmt"
"io"
"math"
"net/http"
"strconv"
"strings"
@@ -23,7 +22,6 @@ import (
"github.com/VictoriaMetrics/VictoriaMetrics/lib/mergeset"
"github.com/VictoriaMetrics/VictoriaMetrics/lib/querytracer"
"github.com/VictoriaMetrics/VictoriaMetrics/lib/storage"
"github.com/VictoriaMetrics/VictoriaMetrics/lib/storage/metricnamestats"
"github.com/VictoriaMetrics/VictoriaMetrics/lib/storage/metricsmetadata"
"github.com/VictoriaMetrics/VictoriaMetrics/lib/stringsutil"
"github.com/VictoriaMetrics/VictoriaMetrics/lib/syncwg"
@@ -33,8 +31,6 @@ import (
var (
retentionPeriod = flagutil.NewRetentionDuration("retentionPeriod", "1M", "Data with timestamps outside the retentionPeriod is automatically deleted. The minimum retentionPeriod is 24h or 1d. "+
"See https://docs.victoriametrics.com/victoriametrics/single-server-victoriametrics/#retention. See also -retentionFilter")
futureRetention = flagutil.NewRetentionDuration("futureRetention", "2d", "Data with timestamps bigger than now+futureRetention is automatically deleted. "+
"The minimum futureRetention is 2 days. See https://docs.victoriametrics.com/victoriametrics/single-server-victoriametrics/#retention")
snapshotAuthKey = flagutil.NewPassword("snapshotAuthKey", "authKey, which must be passed in query string to /snapshot* pages. It overrides -httpAuth.*")
forceMergeAuthKey = flagutil.NewPassword("forceMergeAuthKey", "authKey, which must be passed in query string to /internal/force_merge pages. It overrides -httpAuth.*")
forceFlushAuthKey = flagutil.NewPassword("forceFlushAuthKey", "authKey, which must be passed in query string to /internal/force_flush pages. It overrides -httpAuth.*")
@@ -59,13 +55,11 @@ var (
denyQueriesOutsideRetention = flag.Bool("denyQueriesOutsideRetention", false, "Whether to deny queries outside the configured -retentionPeriod. "+
"When set, then /api/v1/query_range would return '503 Service Unavailable' error for queries with 'from' value outside -retentionPeriod. "+
"This may be useful when multiple data sources with distinct retentions are hidden behind query-tee")
maxHourlySeries = flag.Int64("storage.maxHourlySeries", 0, "The maximum number of unique series can be added to the storage during the last hour. "+
maxHourlySeries = flag.Int("storage.maxHourlySeries", 0, "The maximum number of unique series can be added to the storage during the last hour. "+
"Excess series are logged and dropped. This can be useful for limiting series cardinality. See https://docs.victoriametrics.com/victoriametrics/single-server-victoriametrics/#cardinality-limiter . "+
fmt.Sprintf("Setting this flag to '-1' sets limit to maximum possible value (%d) which is useful in order to enable series tracking without enforcing limits. ", math.MaxInt32)+
"See also -storage.maxDailySeries")
maxDailySeries = flag.Int64("storage.maxDailySeries", 0, "The maximum number of unique series can be added to the storage during the last 24 hours. "+
maxDailySeries = flag.Int("storage.maxDailySeries", 0, "The maximum number of unique series can be added to the storage during the last 24 hours. "+
"Excess series are logged and dropped. This can be useful for limiting series churn rate. See https://docs.victoriametrics.com/victoriametrics/single-server-victoriametrics/#cardinality-limiter . "+
fmt.Sprintf("Setting this flag to '-1' sets limit to maximum possible value (%d) which is useful in order to enable series tracking without enforcing limits. ", math.MaxInt32)+
"See also -storage.maxHourlySeries")
minFreeDiskSpaceBytes = flagutil.NewBytes("storage.minFreeDiskSpaceBytes", 100e6, "The minimum free disk space at -storageDataPath after which the storage stops accepting new data")
@@ -137,12 +131,7 @@ func Init(resetCacheIfNeeded func(mrs []storage.MetricRow)) {
mergeset.SetDataBlocksSparseCacheSize(cacheSizeIndexDBDataBlocksSparse.IntN())
if retentionPeriod.Duration() < 24*time.Hour {
logger.Fatalf("-retentionPeriod cannot be smaller than a day; got %s. "+
"See https://docs.victoriametrics.com/victoriametrics/single-server-victoriametrics/#retention", retentionPeriod)
}
if futureRetention.Duration() < 2*24*time.Hour {
logger.Fatalf("-futureRetention cannot be smaller than 2 days; got %s. "+
"See https://docs.victoriametrics.com/victoriametrics/single-server-victoriametrics/#retention", futureRetention)
logger.Fatalf("-retentionPeriod cannot be smaller than a day; got %s", retentionPeriod)
}
if *idbPrefillStart > 23*time.Hour {
logger.Panicf("-storage.idbPrefillStart cannot exceed 23 hours; got %s", idbPrefillStart)
@@ -152,9 +141,8 @@ func Init(resetCacheIfNeeded func(mrs []storage.MetricRow)) {
WG = syncwg.WaitGroup{}
opts := storage.OpenOptions{
Retention: retentionPeriod.Duration(),
FutureRetention: futureRetention.Duration(),
MaxHourlySeries: getMaxHourlySeries(),
MaxDailySeries: getMaxDailySeries(),
MaxHourlySeries: *maxHourlySeries,
MaxDailySeries: *maxDailySeries,
DisablePerDayIndex: *disablePerDayIndex,
TrackMetricNamesStats: *trackMetricNamesStats,
IDBPrefillStart: *idbPrefillStart,
@@ -245,7 +233,7 @@ func DeleteSeries(qt *querytracer.Tracer, tfss []*storage.TagFilters, maxMetrics
}
// GetMetricNamesStats returns metric names usage stats with give limit and lte predicate
func GetMetricNamesStats(qt *querytracer.Tracer, limit, le int, matchPattern string) (metricnamestats.StatsResult, error) {
func GetMetricNamesStats(qt *querytracer.Tracer, limit, le int, matchPattern string) (storage.MetricNamesStatsResponse, error) {
WG.Add(1)
r := Storage.GetMetricNamesStats(qt, limit, le, matchPattern)
WG.Done()
@@ -614,10 +602,10 @@ func writeStorageMetrics(w io.Writer, strg *storage.Storage) {
metrics.WriteCounterUint64(w, `vm_rows_ignored_total{reason="big_timestamp"}`, m.TooBigTimestampRows)
metrics.WriteCounterUint64(w, `vm_rows_ignored_total{reason="small_timestamp"}`, m.TooSmallTimestampRows)
metrics.WriteCounterUint64(w, `vm_rows_ignored_total{reason="invalid_raw_metric_name"}`, m.InvalidRawMetricNames)
if getMaxHourlySeries() > 0 {
if *maxHourlySeries > 0 {
metrics.WriteCounterUint64(w, `vm_rows_ignored_total{reason="hourly_limit_exceeded"}`, m.HourlySeriesLimitRowsDropped)
}
if getMaxDailySeries() > 0 {
if *maxDailySeries > 0 {
metrics.WriteCounterUint64(w, `vm_rows_ignored_total{reason="daily_limit_exceeded"}`, m.DailySeriesLimitRowsDropped)
}
@@ -627,13 +615,13 @@ func writeStorageMetrics(w io.Writer, strg *storage.Storage) {
metrics.WriteCounterUint64(w, `vm_slow_row_inserts_total`, m.SlowRowInserts)
metrics.WriteCounterUint64(w, `vm_slow_per_day_index_inserts_total`, m.SlowPerDayIndexInserts)
if getMaxHourlySeries() > 0 {
if *maxHourlySeries > 0 {
metrics.WriteGaugeUint64(w, `vm_hourly_series_limit_current_series`, m.HourlySeriesLimitCurrentSeries)
metrics.WriteGaugeUint64(w, `vm_hourly_series_limit_max_series`, m.HourlySeriesLimitMaxSeries)
metrics.WriteCounterUint64(w, `vm_hourly_series_limit_rows_dropped_total`, m.HourlySeriesLimitRowsDropped)
}
if getMaxDailySeries() > 0 {
if *maxDailySeries > 0 {
metrics.WriteGaugeUint64(w, `vm_daily_series_limit_current_series`, m.DailySeriesLimitCurrentSeries)
metrics.WriteGaugeUint64(w, `vm_daily_series_limit_max_series`, m.DailySeriesLimitMaxSeries)
metrics.WriteCounterUint64(w, `vm_daily_series_limit_rows_dropped_total`, m.DailySeriesLimitRowsDropped)
@@ -758,21 +746,3 @@ func jsonResponseError(w http.ResponseWriter, err error) {
errStr := err.Error()
fmt.Fprintf(w, `{"status":"error","msg":%s}`, stringsutil.JSONString(errStr))
}
func getMaxHourlySeries() int {
limit := *maxHourlySeries
if limit == -1 || limit > math.MaxInt32 {
return math.MaxInt32
}
return int(limit)
}
func getMaxDailySeries() int {
limit := *maxDailySeries
if limit == -1 || limit > math.MaxInt32 {
return math.MaxInt32
}
return int(limit)
}

View File

@@ -1,4 +1,4 @@
FROM golang:1.26.2 AS build-web-stage
FROM golang:1.26.1 AS build-web-stage
COPY build /build
WORKDIR /build
@@ -6,7 +6,7 @@ COPY web/ /build/
RUN GOOS=linux GOARCH=amd64 CGO_ENABLED=0 go build -o web-amd64 github.com/VictoriMetrics/vmui/ && \
GOOS=windows GOARCH=amd64 CGO_ENABLED=0 go build -o web-windows github.com/VictoriMetrics/vmui/
FROM alpine:3.23.4
FROM alpine:3.23.3
USER root
COPY --from=build-web-stage /build/web-amd64 /app/web

File diff suppressed because it is too large Load Diff

View File

@@ -23,14 +23,14 @@
"classnames": "^2.5.1",
"dayjs": "^1.11.20",
"lodash.debounce": "^4.0.8",
"marked": "^18.0.0",
"preact": "^10.29.1",
"qs": "^6.15.1",
"marked": "^17.0.5",
"preact": "^10.29.0",
"qs": "^6.15.0",
"react-input-mask": "^2.0.4",
"react-router-dom": "^7.14.1",
"react-router-dom": "^7.13.2",
"uplot": "^1.6.32",
"vite": "^8.0.8",
"web-vitals": "^5.2.0"
"vite": "^8.0.2",
"web-vitals": "^5.1.0"
},
"devDependencies": {
"@eslint/eslintrc": "^3.3.5",
@@ -39,24 +39,24 @@
"@testing-library/jest-dom": "^6.9.1",
"@testing-library/preact": "^3.2.4",
"@types/lodash.debounce": "^4.0.9",
"@types/node": "^25.6.0",
"@types/node": "^25.5.0",
"@types/qs": "^6.15.0",
"@types/react": "^19.2.14",
"@types/react-input-mask": "^3.0.6",
"@types/react-router-dom": "^5.3.3",
"@typescript-eslint/eslint-plugin": "^8.58.2",
"@typescript-eslint/parser": "^8.58.2",
"@typescript-eslint/eslint-plugin": "^8.57.2",
"@typescript-eslint/parser": "^8.57.2",
"cross-env": "^10.1.0",
"eslint": "^9.39.2",
"eslint-plugin-react": "^7.37.5",
"eslint-plugin-unused-imports": "^4.4.1",
"globals": "^17.5.0",
"globals": "^17.4.0",
"http-proxy-middleware": "^3.0.5",
"jsdom": "^29.0.2",
"postcss": "^8.5.10",
"sass-embedded": "^1.99.0",
"typescript": "^6.0.2",
"vitest": "^4.1.4"
"jsdom": "^29.0.1",
"postcss": "^8.5.8",
"sass-embedded": "^1.98.0",
"typescript": "^5.9.3",
"vitest": "^4.1.1"
},
"browserslist": {
"production": [

View File

@@ -16,29 +16,23 @@ export const getExportDataUrl = (server: string, query: string, period: TimePara
return `${server}/api/v1/export?${params}`;
};
const getBaseParams = (period: TimeParams, query: string[]): URLSearchParams => {
export const getExportCSVDataUrl = (server: string, query: string[], period: TimeParams, reduceMemUsage: boolean): string => {
const params = new URLSearchParams({
start: period.start.toString(),
end: period.end.toString(),
format: "__name__,__value__,__timestamp__:unix_ms",
});
query.forEach((q => params.append("match[]", q)));
return params;
};
export const getLabelsUrl = (server: string, query: string[], period: TimeParams): string => {
const params = getBaseParams(period, query);
return `${server}/api/v1/labels?${params}`;
};
export const getExportCSVDataUrl = (server: string, query: string[], period: TimeParams, reduceMemUsage: boolean, format: string): string => {
const params = getBaseParams(period, query);
params.set("format", format);
if (reduceMemUsage) params.set("reduce_mem_usage", "1");
return `${server}/api/v1/export/csv?${params}`;
};
export const getExportJSONDataUrl = (server: string, query: string[], period: TimeParams, reduceMemUsage: boolean): string => {
const params = getBaseParams(period, query);
const params = new URLSearchParams({
start: period.start.toString(),
end: period.end.toString(),
});
query.forEach((q => params.append("match[]", q)));
if (reduceMemUsage) params.set("reduce_mem_usage", "1");
return `${server}/api/v1/export?${params}`;
};

View File

@@ -1,29 +0,0 @@
import { describe, expect, it, vi } from "vitest";
import { fetchRawQueryCSVExport } from "./raw-query";
describe("fetchRawQueryCSVExport", () => {
it.skip("requests all label columns before exporting CSV data", async () => {
const fetchMock = vi.fn()
.mockResolvedValueOnce({
ok: true,
json: async () => ({ data: ["job", "__name__", "instance"] }),
})
.mockResolvedValueOnce({
ok: true,
text: async () => "up,localhost:9100,node_exporter,1,1710000000000",
});
const result = await fetchRawQueryCSVExport(
"http://localhost:8428",
["up"],
{ start: 1710000000, end: 1710000300, step: "15s", date: "2024-03-09T16:05:00Z" },
false,
fetchMock as unknown as typeof fetch,
);
expect(fetchMock).toHaveBeenCalledTimes(2);
expect(fetchMock.mock.calls[0][0]).toBe("http://localhost:8428/api/v1/labels?start=1710000000&end=1710000300&match%5B%5D=up");
expect(fetchMock.mock.calls[1][0]).toBe("http://localhost:8428/api/v1/export/csv?start=1710000000&end=1710000300&match%5B%5D=up&format=__name__%2Cinstance%2Cjob%2C__value__%2C__timestamp__%3Aunix_ms");
expect(result).toBe("up,localhost:9100,node_exporter,1,1710000000000");
});
});

View File

@@ -1,31 +0,0 @@
import { getExportCSVDataUrl, getLabelsUrl } from "./query-range";
import { TimeParams } from "../types";
import { getCSVExportColumns } from "../utils/csv";
interface LabelsResponse {
data?: string[];
}
export const fetchRawQueryCSVExport = async (
serverUrl: string,
query: string[],
period: TimeParams,
reduceMemUsage: boolean,
fetchFn: typeof fetch = fetch,
): Promise<string> => {
const labelsResponse = await fetchFn(getLabelsUrl(serverUrl, query, period));
if (!labelsResponse.ok) {
throw new Error(await labelsResponse.text());
}
const { data = [] } = (await labelsResponse.json()) as LabelsResponse;
const columns = getCSVExportColumns(data);
const format = columns.join(",");
const response = await fetchFn(getExportCSVDataUrl(serverUrl, query, period, reduceMemUsage, format));
if (!response.ok) {
throw new Error(await response.text());
}
return await response.text();
};

View File

@@ -1,7 +1,7 @@
import { useMemo } from "preact/compat";
import "./style.scss";
import { Alert as APIAlert, Group } from "../../../types";
import { Link } from "react-router-dom";
import { Alert as APIAlert } from "../../../types";
import { createSearchParams } from "react-router-dom";
import Button from "../../Main/Button/Button";
import Badges, { BadgeColor } from "../Badges";
import { formatEventTime } from "../helpers";
@@ -9,14 +9,12 @@ import {
SearchIcon,
} from "../../Main/Icons";
import CodeExample from "../../Main/CodeExample/CodeExample";
import router from "../../../router";
interface BaseAlertProps {
item: APIAlert;
group?: Group;
}
const BaseAlert = ({ item, group }: BaseAlertProps) => {
const BaseAlert = ({ item }: BaseAlertProps) => {
const query = item?.expression;
const alertLabels = item?.labels || {};
const alertLabelsItems = useMemo(() => {
@@ -26,19 +24,13 @@ const BaseAlert = ({ item, group }: BaseAlertProps) => {
}]));
}, [alertLabels]);
const queryLink = useMemo(() => {
if (!group?.interval) return;
const params = new URLSearchParams({
const openQueryLink = () => {
const params = {
"g0.expr": query,
"g0.end_time": item.activeAt,
// Interval is the Group's evaluation interval in float seconds as present in the file. See: /app/vmalert/rule/web.go
"g0.step_input": `${group.interval}s`,
"g0.relative_time": "none",
});
return `${router.home}?${params.toString()}`;
}, [query, item.activeAt, group?.interval]);
"g0.end_time": ""
};
window.open(`#/?${createSearchParams(params).toString()}`, "_blank", "noopener noreferrer");
};
return (
<div className="vm-explore-alerts-alert-item">
@@ -53,22 +45,15 @@ const BaseAlert = ({ item, group }: BaseAlertProps) => {
style={{ "text-align": "end" }}
colSpan={2}
>
{queryLink && (
<Link
to={queryLink}
target={"_blank"}
rel="noreferrer"
>
<Button
size="small"
variant="outlined"
color="gray"
startIcon={<SearchIcon />}
>
<span className="vm-button-text">Run query</span>
</Button>
</Link>
)}
<Button
size="small"
variant="outlined"
color="gray"
startIcon={<SearchIcon />}
onClick={openQueryLink}
>
<span className="vm-button-text">Run query</span>
</Button>
</td>
</tr>
<tr>

View File

@@ -1,21 +1,19 @@
import { useMemo } from "preact/compat";
import "./style.scss";
import { Group, Rule as APIRule } from "../../../types";
import { useNavigate, Link } from "react-router-dom";
import { Rule as APIRule } from "../../../types";
import { useNavigate, createSearchParams } from "react-router-dom";
import { SearchIcon, DetailsIcon } from "../../Main/Icons";
import Button from "../../Main/Button/Button";
import Alert from "../../Main/Alert/Alert";
import Badges, { BadgeColor } from "../Badges";
import { formatDuration, formatEventTime } from "../helpers";
import CodeExample from "../../Main/CodeExample/CodeExample";
import router from "../../../router";
interface BaseRuleProps {
item: APIRule;
group?: Group;
}
const BaseRule = ({ item, group }: BaseRuleProps) => {
const BaseRule = ({ item }: BaseRuleProps) => {
const query = item?.query;
const navigate = useNavigate();
const openAlertLink = (id: string) => {
@@ -35,19 +33,13 @@ const BaseRule = ({ item, group }: BaseRuleProps) => {
}]));
}, [ruleLabels]);
const queryLink = useMemo(() => {
if (!group?.interval) return;
const params = new URLSearchParams({
const openQueryLink = () => {
const params = {
"g0.expr": query,
"g0.end_time": item.lastEvaluation,
// Interval is the Group's evaluation interval in float seconds as present in the file. See: /app/vmalert/rule/web.go
"g0.step_input": `${group.interval}s`,
"g0.relative_time": "none",
});
return `${router.home}?${params.toString()}`;
}, [query, item.lastEvaluation, group?.interval]);
"g0.end_time": ""
};
window.open(`#/?${createSearchParams(params).toString()}`, "_blank", "noopener noreferrer");
};
return (
<div className="vm-explore-alerts-rule-item">
@@ -62,22 +54,15 @@ const BaseRule = ({ item, group }: BaseRuleProps) => {
style={{ "text-align": "end" }}
colSpan={2}
>
{queryLink && (
<Link
to={queryLink}
target={"_blank"}
rel="noreferrer"
>
<Button
size="small"
variant="outlined"
color="gray"
startIcon={<SearchIcon />}
>
<span className="vm-button-text">Run query</span>
</Button>
</Link>
)}
<Button
size="small"
variant="outlined"
color="gray"
startIcon={<SearchIcon />}
onClick={openQueryLink}
>
<span className="vm-button-text">Run query</span>
</Button>
</td>
</tr>
<tr>

View File

@@ -2,16 +2,15 @@ import { FC } from "preact/compat";
import ItemHeader from "../ItemHeader";
import Accordion from "../../Main/Accordion/Accordion";
import "./style.scss";
import { Group, Rule as APIRule } from "../../../types";
import { Rule as APIRule } from "../../../types";
import BaseRule from "../BaseRule";
interface RuleProps {
states: Record<string, number>;
rule: APIRule;
group: Group;
}
const Rule: FC<RuleProps> = ({ states, rule, group }) => {
const Rule: FC<RuleProps> = ({ states, rule }) => {
const state = Object.keys(states).length > 0 ? Object.keys(states)[0] : "ok";
return (
<div className={`vm-explore-alerts-rule vm-badge-item ${state.replace(" ", "-")}`}>
@@ -26,10 +25,7 @@ const Rule: FC<RuleProps> = ({ states, rule, group }) => {
name={rule.name}
/>}
>
<BaseRule
item={rule}
group={group}
/>
<BaseRule item={rule} />
</Accordion>
</div>
);

View File

@@ -50,6 +50,7 @@ const RulesHeader = ({
label="Rule type"
placeholder="Please select rule type"
onChange={onChangeRuleType}
autofocus={!!types.length && !isMobile}
includeAll
searchable
/>

View File

@@ -17,7 +17,7 @@ export const formatDuration = (raw: number) => {
export const formatEventTime = (raw: string) => {
const t = dayjs(raw);
return t.year() <= 1 ? "Never" : t.tz().format("DD MMM YYYY HH:mm:ss");
return t.year() <= 1 ? "Never" : t.format("DD MMM YYYY HH:mm:ss");
};
export const getStates = (rule: Rule) => {

View File

@@ -2,11 +2,10 @@ import Spinner from "../../components/Main/Spinner/Spinner";
import Alert from "../../components/Main/Alert/Alert";
import { useFetchItem } from "./hooks/useFetchItem";
import "./style.scss";
import { Alert as APIAlert, Group as APIGroup } from "../../types";
import { Alert as APIAlert } from "../../types";
import ItemHeader from "../../components/ExploreAlerts/ItemHeader";
import BaseAlert from "../../components/ExploreAlerts/BaseAlert";
import Modal from "../../components/Main/Modal/Modal";
import { useFetchGroup } from "./hooks/useFetchGroup";
interface ExploreAlertProps {
groupId: string;
@@ -18,19 +17,10 @@ interface ExploreAlertProps {
const ExploreAlert = ({ groupId, id, mode, onClose }: ExploreAlertProps) => {
const {
item,
isLoading: isLoadingItem,
error: errorItem,
isLoading,
error,
} = useFetchItem<APIAlert>({ groupId, id, mode });
const {
group,
isLoading: isLoadingGroup,
error: errorGroup,
} = useFetchGroup<APIGroup>({ id: groupId });
const error = errorItem || errorGroup;
const isLoading = isLoadingItem || isLoadingGroup;
if (isLoading) return (
<Spinner />
);
@@ -61,12 +51,7 @@ const ExploreAlert = ({ groupId, id, mode, onClose }: ExploreAlertProps) => {
onClose={onClose}
>
<div className="vm-explore-alerts">
{item ? (
<BaseAlert
item={item}
group={group}
/>
) : (
{item && (<BaseAlert item={item} />) || (
<Alert variant="info">{noItemFound}</Alert>
)}
</div>

View File

@@ -2,12 +2,11 @@ import Spinner from "../../components/Main/Spinner/Spinner";
import Alert from "../../components/Main/Alert/Alert";
import { useFetchItem } from "./hooks/useFetchItem";
import "./style.scss";
import { Group as APIGroup, Rule as APIRule } from "../../types";
import { Rule as APIRule } from "../../types";
import ItemHeader from "../../components/ExploreAlerts/ItemHeader";
import BaseRule from "../../components/ExploreAlerts/BaseRule";
import Modal from "../../components/Main/Modal/Modal";
import { getStates } from "../../components/ExploreAlerts/helpers";
import { useFetchGroup } from "./hooks/useFetchGroup";
interface ExploreRuleProps {
groupId: string;
@@ -19,19 +18,10 @@ interface ExploreRuleProps {
const ExploreRule = ({ groupId, id, mode, onClose }: ExploreRuleProps) => {
const {
item,
isLoading: isLoadingItem,
error: errorItem,
isLoading,
error,
} = useFetchItem<APIRule>({ groupId, id, mode });
const {
group,
isLoading: isLoadingGroup,
error: errorGroup,
} = useFetchGroup<APIGroup>({ id: groupId });
const error = errorItem || errorGroup;
const isLoading = isLoadingItem || isLoadingGroup;
if (isLoading) return (
<Spinner />
);
@@ -59,12 +49,7 @@ const ExploreRule = ({ groupId, id, mode, onClose }: ExploreRuleProps) => {
onClose={onClose}
>
<div className="vm-explore-alerts">
{item ? (
<BaseRule
item={item}
group={group}
/>
) : (
{item && (<BaseRule item={item} />) || (
<Alert variant="info">{noItemFound}</Alert>
)}
</div>

View File

@@ -132,7 +132,7 @@ const ExploreRules: FC = () => {
newParams.set("page_num", "1");
setSearchParams(newParams);
const changes = getChanges(title, states);
setStates(changes.length === allStates.length ? [] : changes);
setStates(changes.length == allStates.length ? [] : changes);
}, [states, searchParams]);
const handleChangeRuleType = useCallback((title: string) => {
@@ -186,7 +186,6 @@ const ExploreRules: FC = () => {
<Rule
key={`rule-${rule.id}`}
rule={rule}
group={group}
states={getStates(rule)}
/>
))}

View File

@@ -6,11 +6,10 @@ import { useTimeState } from "../../../state/time/TimeStateContext";
import { useAppState } from "../../../state/common/StateContext";
import { useCustomPanelState } from "../../../state/customPanel/CustomPanelStateContext";
import { isValidHttpUrl } from "../../../utils/url";
import { getExportDataUrl, getExportJSONDataUrl } from "../../../api/query-range";
import { getExportCSVDataUrl, getExportDataUrl, getExportJSONDataUrl } from "../../../api/query-range";
import { parseLineToJSON } from "../../../utils/json";
import { downloadCSV, downloadJSON } from "../../../utils/file";
import { useSnack } from "../../../contexts/Snackbar";
import { fetchRawQueryCSVExport } from "../../../api/raw-query";
interface FetchQueryParams {
hideQuery?: number[];
@@ -68,8 +67,11 @@ export const useFetchExport = ({ hideQuery, showAllSeries }: FetchQueryParams):
const getFilename = (format: ExportFormats) => `vmui_export_${query.join("_")}_${period.start}_${period.end}.${format}`;
return {
csv: async () => {
const url = getExportCSVDataUrl(serverUrl, query, period, reduceMemUsage);
const response = await fetch(url);
try {
const text = await fetchRawQueryCSVExport(serverUrl, query, period, reduceMemUsage);
let text = await response.text();
text = "name,value,timestamp\n" + text;
downloadCSV(text, getFilename("csv"));
} catch (e) {
console.error(e);

View File

@@ -1,18 +1,47 @@
import { ArrayRGB } from "../types";
export const baseContrastColors = [
"#e6194b", // red
"#4363d8", // blue
"#3cb44b", // green
"#911eb4", // purple
"#f58231", // orange
"#f032e6", // magenta
"#c8a200", // dark yellow
"#a65628", // brown
"#42d4f4", // cyan
"#a9a9a9", // gray
"#e54040",
"#32a9dc",
"#2ee329",
"#7126a1",
"#e38f0f",
"#3d811a",
"#ffea00",
"#2d2d2d",
"#da42a6",
"#a44e0c",
];
export const hexToRGB = (hex: string): string => {
if (hex.length != 7) return "0, 0, 0";
const r = parseInt(hex.slice(1, 3), 16);
const g = parseInt(hex.slice(3, 5), 16);
const b = parseInt(hex.slice(5, 7), 16);
return `${r}, ${g}, ${b}`;
};
export const getColorFromString = (text: string): string => {
const SEED = 16777215;
const FACTOR = 49979693;
let b = 1;
let d = 0;
let f = 1;
if (text.length > 0) {
for (let i = 0; i < text.length; i++) {
text[i].charCodeAt(0) > d && (d = text[i].charCodeAt(0));
f = parseInt(String(SEED / d));
b = (b + text[i].charCodeAt(0) * f * FACTOR) % SEED;
}
}
let hex = ((b * text.length) % SEED).toString(16);
hex = hex.padEnd(6, hex);
return `#${hex}`;
};
export const getContrastColor = (value: string) => {
let hex = value.replace("#", "").trim();
@@ -41,109 +70,3 @@ export const generateGradient = (start: ArrayRGB, end: ArrayRGB, steps: number)
}
return gradient.map(c => `rgb(${c})`);
};
const clamp = (n: number, min: number, max: number) => Math.min(max, Math.max(min, n));
const hexToRgb = (hex: string) => {
let value = hex.replace("#", "").trim();
if (value.length === 3) {
value = value.split("").map((c) => c + c).join("");
}
if (!/^[0-9a-fA-F]{6}$/.test(value)) {
throw new Error("Invalid HEX color.");
}
return {
r: parseInt(value.slice(0, 2), 16),
g: parseInt(value.slice(2, 4), 16),
b: parseInt(value.slice(4, 6), 16),
};
};
const rgbToHex = (r: number, g: number, b: number) =>
`#${[r, g, b].map((v) => clamp(Math.round(v), 0, 255).toString(16).padStart(2, "0")).join("")}`;
const rgbToHsl = (r: number, g: number, b: number) => {
r /= 255; g /= 255; b /= 255;
const max = Math.max(r, g, b);
const min = Math.min(r, g, b);
const l = (max + min) / 2;
const d = max - min;
let h = 0;
let s = 0;
if (d !== 0) {
s = d / (1 - Math.abs(2 * l - 1));
switch (max) {
case r: h = ((g - b) / d) % 6; break;
case g: h = (b - r) / d + 2; break;
case b: h = (r - g) / d + 4; break;
}
h *= 60;
if (h < 0) h += 360;
}
return { h, s: s * 100, l: l * 100 };
};
const hslToRgb = (h: number, s: number, l: number) => {
s /= 100;
l /= 100;
const c = (1 - Math.abs(2 * l - 1)) * s;
const x = c * (1 - Math.abs((h / 60) % 2 - 1));
const m = l - c / 2;
let r: number;
let g: number;
let b: number;
if (h < 60) [r, g, b] = [c, x, 0];
else if (h < 120) [r, g, b] = [x, c, 0];
else if (h < 180) [r, g, b] = [0, c, x];
else if (h < 240) [r, g, b] = [0, x, c];
else if (h < 300) [r, g, b] = [x, 0, c];
else [r, g, b] = [c, 0, x];
return {
r: (r + m) * 255,
g: (g + m) * 255,
b: (b + m) * 255,
};
};
const varyColor = (hex: string, variant: number) => {
const { r, g, b } = hexToRgb(hex);
const { h, s, l } = rgbToHsl(r, g, b);
const variants = [
{ ds: 0, dl: 0 },
{ ds: -20, dl: -16 },
{ ds: -16, dl: +16 },
{ ds: +14, dl: -20 },
];
const v = variants[variant % variants.length];
const nextS = clamp(s + v.ds, 35, 85);
const nextL = clamp(l + v.dl, 35, 70);
const rgb = hslToRgb(h, nextS, nextL);
return rgbToHex(rgb.r, rgb.g, rgb.b);
};
export const getSeriesColor = (index: number) => {
const baseCount = baseContrastColors.length;
const baseIndex = index % baseCount;
const variantIndex = Math.floor(index / baseCount);
const base = baseContrastColors[(baseIndex + variantIndex) % baseCount];
return varyColor(base, variantIndex);
};

View File

@@ -1,5 +1,5 @@
import { describe, expect, it } from "vitest";
import { formatValueToCSV, getCSVExportColumns } from "./csv";
import { formatValueToCSV } from "./csv";
describe("formatValueToCSV", () => {
it("should wrap value in quotes if it contains a comma", () => {
@@ -32,10 +32,3 @@ describe("formatValueToCSV", () => {
expect(result).toBe("");
});
});
describe("getCSVExportColumns", () => {
it("should prepend metric name and append value and timestamp columns", () => {
const result = getCSVExportColumns(["instance", "__name__", "job", "instance"]);
expect(result.join(",")).toEqual("__name__,instance,job,__value__,__timestamp__:unix_ms");
});
});

View File

@@ -2,8 +2,3 @@ export const formatValueToCSV= (value: string) =>
(value.includes(",") || value.includes("\n") || value.includes("\""))
? "\"" + value.replace(/"/g, "\"\"") + "\""
: value;
export const getCSVExportColumns = (labelNames: string[]) => {
const labels = Array.from(new Set(labelNames.filter((label) => label && label !== "__name__"))).sort();
return ["__name__", ...labels, "__value__", "__timestamp__:unix_ms"];
};

View File

@@ -2,7 +2,7 @@ import { MetricBase, MetricResult } from "../../api/types";
import uPlot, { Series as uPlotSeries } from "uplot";
import { getNameForMetric, promValueToNumber } from "../metric";
import { HideSeriesArgs, LegendItemType, SeriesItem } from "../../types";
import { getSeriesColor } from "../color";
import { baseContrastColors, getColorFromString } from "../color";
import { getMathStats } from "../math";
import { formatPrettyNumber } from "./helpers";
import { drawPoints } from "./scatter";
@@ -17,10 +17,11 @@ export const extractFields = (metric: MetricBase["metric"]): string => {
export const getSeriesItemContext = (data: MetricResult[], hideSeries: string[], alias: string[], showPoints?: boolean, isRawQuery?: boolean) => {
const colorState: {[key: string]: string} = {};
const maxColors = Math.min(data.length, baseContrastColors.length);
for (let i = 0; i < data.length; i++) {
for (let i = 0; i < maxColors; i++) {
const label = getNameForMetric(data[i], alias[data[i].group - 1]);
colorState[label] = getSeriesColor(i);
colorState[label] = baseContrastColors[i];
}
return (d: MetricResult): SeriesItem => {
@@ -31,7 +32,7 @@ export const getSeriesItemContext = (data: MetricResult[], hideSeries: string[],
label,
hasAlias: Boolean(aliasValue),
width: 1.4,
stroke: colorState[label],
stroke: colorState[label] || getColorFromString(label),
points: getPointsSeries(showPoints, isRawQuery),
spanGaps: false,
freeFormFields: d.metric,

View File

@@ -15,12 +15,13 @@
"forceConsistentCasingInFileNames": true,
"noFallthroughCasesInSwitch": true,
"module": "esnext",
"moduleResolution": "bundler",
"moduleResolution": "node",
"resolveJsonModule": true,
"isolatedModules": true,
"noEmit": true,
"jsx": "react-jsx",
"jsxImportSource": "preact",
"downlevelIteration": true,
"noUnusedLocals": true,
"paths": {
"react": ["./node_modules/preact/compat/"],
@@ -31,8 +32,5 @@
},
"include": [
"src"
],
"exclude": [
"scripts/**/*.ts"
]
}

View File

@@ -33,41 +33,37 @@ func (c *Client) CloseConnections() {
c.httpCli.CloseIdleConnections()
}
// Get sends an HTTP GET request, returns
// Get sends a HTTP GET request, returns
// the response body and status code to the caller.
func (c *Client) Get(t *testing.T, url string, headers http.Header) (string, int) {
func (c *Client) Get(t *testing.T, url string) (string, int) {
t.Helper()
return c.do(t, http.MethodGet, url, nil, headers)
return c.do(t, http.MethodGet, url, "", nil)
}
// Post sends an HTTP POST request, returns
// Post sends a HTTP POST request, returns
// the response body and status code to the caller.
func (c *Client) Post(t *testing.T, url string, data []byte, headers http.Header) (string, int) {
func (c *Client) Post(t *testing.T, url, contentType string, data []byte) (string, int) {
t.Helper()
return c.do(t, http.MethodPost, url, data, headers)
return c.do(t, http.MethodPost, url, contentType, data)
}
// PostForm sends an HTTP POST request containing the POST-form data with attached getHeaders, returns
// PostForm sends a HTTP POST request containing the POST-form data, returns
// the response body and status code to the caller.
func (c *Client) PostForm(t *testing.T, url string, data url.Values, headers http.Header) (string, int) {
func (c *Client) PostForm(t *testing.T, url string, data url.Values) (string, int) {
t.Helper()
if headers == nil {
headers = make(http.Header)
}
headers.Set("Content-Type", "application/x-www-form-urlencoded")
return c.Post(t, url, []byte(data.Encode()), headers)
return c.Post(t, url, "application/x-www-form-urlencoded", []byte(data.Encode()))
}
// Delete sends an HTTP DELETE request and returns the response body and status code
// Delete sends a HTTP DELETE request and returns the response body and status code
// to the caller.
func (c *Client) Delete(t *testing.T, url string) (string, int) {
t.Helper()
return c.do(t, http.MethodDelete, url, nil, nil)
return c.do(t, http.MethodDelete, url, "", nil)
}
// do prepares an HTTP request, sends it to the server, receives the response
// do prepares a HTTP request, sends it to the server, receives the response
// from the server, returns the response body and status code to the caller.
func (c *Client) do(t *testing.T, method, url string, data []byte, headers http.Header) (string, int) {
func (c *Client) do(t *testing.T, method, url, contentType string, data []byte) (string, int) {
t.Helper()
req, err := http.NewRequest(method, url, bytes.NewReader(data))
@@ -75,7 +71,9 @@ func (c *Client) do(t *testing.T, method, url string, data []byte, headers http.
t.Fatalf("could not create a HTTP request: %v", err)
}
req.Header = headers
if len(contentType) > 0 {
req.Header.Add("Content-Type", contentType)
}
res, err := c.httpCli.Do(req)
if err != nil {
t.Fatalf("could not send HTTP request: %v", err)
@@ -137,7 +135,7 @@ func (app *ServesMetrics) GetIntMetric(t *testing.T, metricName string) int {
func (app *ServesMetrics) GetMetric(t *testing.T, metricName string) float64 {
t.Helper()
metrics, statusCode := app.cli.Get(t, app.metricsURL, nil)
metrics, statusCode := app.cli.Get(t, app.metricsURL)
if statusCode != http.StatusOK {
t.Fatalf("unexpected status code: got %d, want %d", statusCode, http.StatusOK)
}
@@ -163,7 +161,7 @@ func (app *ServesMetrics) GetMetricsByPrefix(t *testing.T, prefix string) []floa
values := []float64{}
metrics, statusCode := app.cli.Get(t, app.metricsURL, nil)
metrics, statusCode := app.cli.Get(t, app.metricsURL)
if statusCode != http.StatusOK {
t.Fatalf("unexpected status code: got %d, want %d", statusCode, http.StatusOK)
}
@@ -192,7 +190,7 @@ func (app *ServesMetrics) GetMetricsByRegexp(t *testing.T, re *regexp.Regexp) []
values := []float64{}
metrics, statusCode := app.cli.Get(t, app.metricsURL, nil)
metrics, statusCode := app.cli.Get(t, app.metricsURL)
if statusCode != http.StatusOK {
t.Fatalf("unexpected status code: got %d, want %d", statusCode, http.StatusOK)
}

View File

@@ -4,7 +4,6 @@ import (
"encoding/json"
"fmt"
"math"
"net/http"
"net/url"
"slices"
"sort"
@@ -89,23 +88,6 @@ type QueryOpts struct {
MaxLookback string
LatencyOffset string
Format string
NoCache string
Headers http.Header
}
// getTenant returns tenant with optional default value
func (qos *QueryOpts) getTenant() string {
if qos.Tenant == "" {
return "0"
}
return qos.Tenant
}
func (qos *QueryOpts) getHeaders() http.Header {
if qos.Headers == nil {
qos.Headers = make(http.Header)
}
return qos.Headers
}
func (qos *QueryOpts) asURLValues() url.Values {
@@ -130,11 +112,18 @@ func (qos *QueryOpts) asURLValues() url.Values {
addNonEmpty("max_lookback", qos.MaxLookback)
addNonEmpty("latency_offset", qos.LatencyOffset)
addNonEmpty("format", qos.Format)
addNonEmpty("nocache", qos.NoCache)
return uv
}
// getTenant returns tenant with optional default value
func (qos *QueryOpts) getTenant() string {
if qos.Tenant == "" {
return "0"
}
return qos.Tenant
}
// PrometheusAPIV1QueryResponse is an inmemory representation of the
// /prometheus/api/v1/query or /prometheus/api/v1/query_range response.
type PrometheusAPIV1QueryResponse struct {

View File

@@ -87,11 +87,11 @@ func (tc *TestCase) MustStartDefaultVmsingle() *Vmsingle {
}
// MustStartVmsingle is a test helper function that starts an instance of
// vmsingle located at ../../bin/victoria-metrics-race and fails the test if the app
// vmsingle located at ../../bin/victoria-metrics and fails the test if the app
// fails to start.
func (tc *TestCase) MustStartVmsingle(instance string, flags []string) *Vmsingle {
tc.t.Helper()
return tc.MustStartVmsingleAt(instance, "../../bin/victoria-metrics-race", flags)
return tc.MustStartVmsingleAt(instance, "../../bin/victoria-metrics", flags)
}
// MustStartVmsingleAt is a test helper function that starts an instance of
@@ -108,11 +108,11 @@ func (tc *TestCase) MustStartVmsingleAt(instance, binary string, flags []string)
}
// MustStartVmstorage is a test helper function that starts an instance of
// vmstorage located at ../../bin/vmstorage-race and fails the test if the app fails
// vmstorage located at ../../bin/vmstorage and fails the test if the app fails
// to start.
func (tc *TestCase) MustStartVmstorage(instance string, flags []string) *Vmstorage {
tc.t.Helper()
return tc.MustStartVmstorageAt(instance, "../../bin/vmstorage-race", flags)
return tc.MustStartVmstorageAt(instance, "../../bin/vmstorage", flags)
}
// MustStartVmstorageAt is a test helper function that starts an instance of
@@ -293,12 +293,12 @@ func (tc *TestCase) MustStartCluster(opts *ClusterOptions) *Vmcluster {
tc.t.Helper()
if opts.Vmstorage1Binary == "" {
opts.Vmstorage1Binary = "../../bin/vmstorage-race"
opts.Vmstorage1Binary = "../../bin/vmstorage"
}
vmstorage1 := tc.MustStartVmstorageAt(opts.Vmstorage1Instance, opts.Vmstorage1Binary, opts.Vmstorage1Flags)
if opts.Vmstorage2Binary == "" {
opts.Vmstorage2Binary = "../../bin/vmstorage-race"
opts.Vmstorage2Binary = "../../bin/vmstorage"
}
vmstorage2 := tc.MustStartVmstorageAt(opts.Vmstorage2Instance, opts.Vmstorage2Binary, opts.Vmstorage2Flags)

View File

@@ -28,7 +28,7 @@ func TestSingleBackupRestore(t *testing.T) {
return tc.MustStartVmsingle("vmsingle", []string{
"-storageDataPath=" + storageDataPath,
"-retentionPeriod=100y",
"-futureRetention=2y",
"-search.maxStalenessInterval=1m",
})
},
stopSUT: func() {
@@ -61,18 +61,18 @@ func TestClusterBackupRestore(t *testing.T) {
Vmstorage1Flags: []string{
"-storageDataPath=" + storage1DataPath,
"-retentionPeriod=100y",
"-futureRetention=2y",
},
Vmstorage2Instance: "vmstorage2",
Vmstorage2Flags: []string{
"-storageDataPath=" + storage2DataPath,
"-retentionPeriod=100y",
"-futureRetention=2y",
},
VminsertInstance: "vminsert",
VminsertFlags: []string{},
VmselectInstance: "vmselect",
VmselectFlags: []string{},
VmselectFlags: []string{
"-search.maxStalenessInterval=1m",
},
})
},
stopSUT: func() {
@@ -100,20 +100,15 @@ func TestClusterBackupRestore(t *testing.T) {
func testBackupRestore(tc *apptest.TestCase, opts testBackupRestoreOpts) {
t := tc.T()
type data struct {
samples []string
wantSeries []map[string]string
wantQueryResults []*apptest.QueryResult
}
genData := func(count int, prefix string, start, step int64) data {
recs := make([]string, count)
wantSeries := make([]map[string]string, count)
wantQueryResults := make([]*apptest.QueryResult, count)
const msecPerMinute = 60 * 1000
genData := func(count int, prefix string, start int64) (recs []string, wantSeries []map[string]string, wantQueryResults []*apptest.QueryResult) {
recs = make([]string, count)
wantSeries = make([]map[string]string, count)
wantQueryResults = make([]*apptest.QueryResult, count)
for i := range count {
name := fmt.Sprintf("%s_%03d", prefix, i)
value := float64(i)
timestamp := start + int64(i)*step
timestamp := start + int64(i)*msecPerMinute
recs[i] = fmt.Sprintf("%s %f %d", name, value, timestamp)
wantSeries[i] = map[string]string{"__name__": name}
@@ -122,15 +117,7 @@ func testBackupRestore(tc *apptest.TestCase, opts testBackupRestoreOpts) {
Samples: []*apptest.Sample{{Timestamp: timestamp, Value: value}},
}
}
return data{recs, wantSeries, wantQueryResults}
}
concatData := func(d1, d2 data) data {
var d data
d.samples = slices.Concat(d1.samples, d2.samples)
d.wantSeries = slices.Concat(d1.wantSeries, d2.wantSeries)
d.wantQueryResults = slices.Concat(d1.wantQueryResults, d2.wantQueryResults)
return d
return recs, wantSeries, wantQueryResults
}
backupBaseDir, err := filepath.Abs(filepath.Join(tc.Dir(), "backups"))
@@ -161,17 +148,15 @@ func testBackupRestore(tc *apptest.TestCase, opts testBackupRestoreOpts) {
// assertSeries retrieves all data from the storage and compares it with the
// expected result.
assertQueryResults := func(app apptest.PrometheusQuerier, query string, start, end, step int64, want []*apptest.QueryResult) {
assertQueryResults := func(app apptest.PrometheusQuerier, query string, start, end int64, want []*apptest.QueryResult) {
t.Helper()
tc.Assert(&apptest.AssertOptions{
Msg: "unexpected /api/v1/query_range response",
Got: func() any {
return app.PrometheusAPIV1QueryRange(t, query, apptest.QueryOpts{
Start: fmt.Sprintf("%d", start),
End: fmt.Sprintf("%d", end),
Step: fmt.Sprintf("%dms", step),
MaxLookback: fmt.Sprintf("%dms", step-1),
NoCache: "1",
Start: fmt.Sprintf("%d", start),
End: fmt.Sprintf("%d", end),
Step: "60s",
})
},
Want: &apptest.PrometheusAPIV1QueryResponse{
@@ -182,6 +167,7 @@ func testBackupRestore(tc *apptest.TestCase, opts testBackupRestoreOpts) {
},
},
FailNow: true,
Retries: 300,
})
}
@@ -207,20 +193,9 @@ func testBackupRestore(tc *apptest.TestCase, opts testBackupRestoreOpts) {
// Use the same number of metrics and time range for all the data ingestions
// below.
const numMetrics = 1000
start := time.Date(2025, 1, 1, 0, 0, 0, 0, time.UTC).UnixMilli()
end := time.Date(2025, 3, 1, 0, 0, 0, 0, time.UTC).UnixMilli()
step := (end - start) / numMetrics
batch1 := genData(numMetrics, "batch1", start, step)
batch2 := genData(numMetrics, "batch2", start, step)
batches12 := concatData(batch1, batch2)
now := time.Now().UTC()
startFuture := time.Date(now.Year()+1, 1, 1, 0, 0, 0, 0, time.UTC).UnixMilli()
endFuture := time.Date(now.Year()+1, 3, 1, 0, 0, 0, 0, time.UTC).UnixMilli()
stepFuture := (endFuture - startFuture) / numMetrics
batch1Future := genData(numMetrics, "batch1", startFuture, stepFuture)
batch2Future := genData(numMetrics, "batch2", startFuture, stepFuture)
batches12Future := concatData(batch1Future, batch2Future)
// With 1000 metrics (one per minute), the time range spans 2 months.
end := time.Date(2025, 3, 1, 10, 0, 0, 0, time.UTC).UnixMilli()
start := end - numMetrics*msecPerMinute
// Verify backup/restore:
//
@@ -234,25 +209,23 @@ func testBackupRestore(tc *apptest.TestCase, opts testBackupRestoreOpts) {
// - Start vmsingle
// - Ensure that the queries return batch1 data only.
batch1Data, wantBatch1Series, wantBatch1QueryResults := genData(numMetrics, "batch1", start)
batch2Data, wantBatch2Series, wantBatch2QueryResults := genData(numMetrics, "batch2", start)
wantBatch12Series := slices.Concat(wantBatch1Series, wantBatch2Series)
wantBatch12QueryResults := slices.Concat(wantBatch1QueryResults, wantBatch2QueryResults)
sut := opts.startSUT()
sut.PrometheusAPIV1ImportPrometheus(t, batch1.samples, apptest.QueryOpts{})
sut.PrometheusAPIV1ImportPrometheus(t, batch1Future.samples, apptest.QueryOpts{})
sut.PrometheusAPIV1ImportPrometheus(t, batch1Data, apptest.QueryOpts{})
sut.ForceFlush(t)
assertSeries(sut, `{__name__=~"batch1.*"}`, start, end, batch1.wantSeries)
assertSeries(sut, `{__name__=~"batch1.*"}`, startFuture, endFuture, batch1Future.wantSeries)
assertQueryResults(sut, `{__name__=~"batch1.*"}`, start, end, step, batch1.wantQueryResults)
assertQueryResults(sut, `{__name__=~"batch1.*"}`, startFuture, endFuture, stepFuture, batch1Future.wantQueryResults)
assertSeries(sut, `{__name__=~"batch1.*"}`, start, end, wantBatch1Series)
assertQueryResults(sut, `{__name__=~"batch1.*"}`, start, end, wantBatch1QueryResults)
createBackup(sut, "batch1")
sut.PrometheusAPIV1ImportPrometheus(t, batch2.samples, apptest.QueryOpts{})
sut.PrometheusAPIV1ImportPrometheus(t, batch2Future.samples, apptest.QueryOpts{})
sut.PrometheusAPIV1ImportPrometheus(t, batch2Data, apptest.QueryOpts{})
sut.ForceFlush(t)
assertSeries(sut, `{__name__=~"batch(1|2).*"}`, start, end, batches12.wantSeries)
assertSeries(sut, `{__name__=~"batch(1|2).*"}`, startFuture, endFuture, batches12Future.wantSeries)
assertQueryResults(sut, `{__name__=~"batch(1|2).*"}`, start, end, step, batches12.wantQueryResults)
assertQueryResults(sut, `{__name__=~"batch(1|2).*"}`, startFuture, endFuture, stepFuture, batches12Future.wantQueryResults)
assertSeries(sut, `{__name__=~"batch(1|2).*"}`, start, end, wantBatch12Series)
assertQueryResults(sut, `{__name__=~"batch(1|2).*"}`, start, end, wantBatch12QueryResults)
createBackup(sut, "batch12")
opts.stopSUT()
@@ -261,8 +234,6 @@ func testBackupRestore(tc *apptest.TestCase, opts testBackupRestoreOpts) {
sut = opts.startSUT()
assertSeries(sut, `{__name__=~"batch(1|2).*"}`, start, end, batch1.wantSeries)
assertSeries(sut, `{__name__=~"batch(1|2).*"}`, startFuture, endFuture, batch1Future.wantSeries)
assertQueryResults(sut, `{__name__=~"batch(1|2).*"}`, start, end, step, batch1.wantQueryResults)
assertQueryResults(sut, `{__name__=~"batch(1|2).*"}`, startFuture, endFuture, stepFuture, batch1Future.wantQueryResults)
assertSeries(sut, `{__name__=~"batch1.*"}`, start, end, wantBatch1Series)
assertQueryResults(sut, `{__name__=~"batch1.*"}`, start, end, wantBatch1QueryResults)
}

View File

@@ -1,211 +0,0 @@
package tests
import (
"fmt"
"path/filepath"
"testing"
"time"
"github.com/VictoriaMetrics/VictoriaMetrics/apptest"
)
func TestSingleFutureTimestamps(t *testing.T) {
tc := apptest.NewTestCase(t)
defer tc.Stop()
opts := testFutureTimestampsOpts{
start: func() apptest.PrometheusWriteQuerier {
return tc.MustStartVmsingle("vmsingle", []string{
"-storageDataPath=" + filepath.Join(tc.Dir(), "vmsingle"),
"-retentionPeriod=100y",
"-futureRetention=100y",
})
},
stop: func() {
tc.StopApp("vmsingle")
},
}
testFutureTimestamps(tc, opts)
}
func TestClusterFutureTimestamps(t *testing.T) {
tc := apptest.NewTestCase(t)
defer tc.Stop()
opts := testFutureTimestampsOpts{
start: func() apptest.PrometheusWriteQuerier {
return tc.MustStartCluster(&apptest.ClusterOptions{
Vmstorage1Instance: "vmstorage1",
Vmstorage1Flags: []string{
"-storageDataPath=" + filepath.Join(tc.Dir(), "vmstorage1"),
"-retentionPeriod=100y",
"-futureRetention=100y",
},
Vmstorage2Instance: "vmstorage2",
Vmstorage2Flags: []string{
"-storageDataPath=" + filepath.Join(tc.Dir(), "vmstorage2"),
"-retentionPeriod=100y",
"-futureRetention=100y",
},
VminsertInstance: "vminsert",
VminsertFlags: []string{},
VmselectInstance: "vmselect",
VmselectFlags: []string{},
})
},
stop: func() {
tc.StopApp("vminsert")
tc.StopApp("vmselect")
tc.StopApp("vmstorage1")
tc.StopApp("vmstorage2")
},
}
testFutureTimestamps(tc, opts)
}
type testFutureTimestampsOpts struct {
start func() apptest.PrometheusWriteQuerier
stop func()
}
func testFutureTimestamps(tc *apptest.TestCase, opts testFutureTimestampsOpts) {
t := tc.T()
// assertSeries retrieves set of all metric names from the storage and
// compares it with the expected set.
assertSeries := func(app apptest.PrometheusQuerier, prefix string, start, end int64, want []map[string]string) {
t.Helper()
query := fmt.Sprintf(`{__name__=~"metric_%s.*"}`, prefix)
tc.Assert(&apptest.AssertOptions{
Msg: "unexpected /api/v1/series response",
Got: func() any {
return app.PrometheusAPIV1Series(t, query, apptest.QueryOpts{
Start: fmt.Sprintf("%d", start),
End: fmt.Sprintf("%d", end),
}).Sort()
},
Want: &apptest.PrometheusAPIV1SeriesResponse{
Status: "success",
Data: want,
},
FailNow: true,
})
}
// assertSeries retrieves all data from the storage and compares it with the
// expected result.
assertQueryResults := func(app apptest.PrometheusQuerier, prefix string, start, end, step int64, want []*apptest.QueryResult) {
t.Helper()
query := fmt.Sprintf(`{__name__=~"metric_%s.*"}`, prefix)
tc.Assert(&apptest.AssertOptions{
Msg: "unexpected /api/v1/query_range response",
Got: func() any {
return app.PrometheusAPIV1QueryRange(t, query, apptest.QueryOpts{
Start: fmt.Sprintf("%d", start),
End: fmt.Sprintf("%d", end),
Step: fmt.Sprintf("%dms", step),
MaxLookback: fmt.Sprintf("%dms", step-1),
NoCache: "1",
})
},
Want: &apptest.PrometheusAPIV1QueryResponse{
Status: "success",
Data: &apptest.QueryData{
ResultType: "matrix",
Result: want,
},
},
FailNow: true,
})
}
f := func(prefix string, startTime, endTime time.Time, wantEmpty bool) {
const numMetrics = 1000
start := startTime.UnixMilli()
end := endTime.UnixMilli()
step := (end - start) / numMetrics
data := genFutureTimestampsData(prefix, numMetrics, start, step)
if wantEmpty {
data.wantSeries = []map[string]string{}
data.wantQueryResults = []*apptest.QueryResult{}
}
// Ingest data and check query results.
sut := opts.start()
sut.PrometheusAPIV1ImportPrometheus(t, data.samples, apptest.QueryOpts{})
sut.ForceFlush(t)
assertSeries(sut, prefix, start, end, data.wantSeries)
assertQueryResults(sut, prefix, start, end, step, data.wantQueryResults)
// Ensure the queries work after restrart.
opts.stop()
sut = opts.start()
assertSeries(sut, prefix, start, end, data.wantSeries)
assertQueryResults(sut, prefix, start, end, step, data.wantQueryResults)
opts.stop()
}
now := time.Now().UTC()
retentionLimit := 100 * 365 * 24 * time.Hour
var start, end time.Time
start = time.Date(now.Year(), now.Month(), now.Day()+1, 0, 0, 0, 0, time.UTC)
end = time.Date(now.Year(), now.Month(), now.Day()+2, 0, 0, 0, 0, time.UTC)
f("future_1d", start, end, false)
start = time.Date(now.Year(), now.Month()+1, 1, 0, 0, 0, 0, time.UTC)
end = time.Date(now.Year(), now.Month()+2, 1, 0, 0, 0, 0, time.UTC)
f("future_1m", start, end, false)
start = time.Date(now.Year()+1, 1, 1, 0, 0, 0, 0, time.UTC)
end = time.Date(now.Year()+2, 1, 1, 0, 0, 0, 0, time.UTC)
f("future_1y", start, end, false)
start = now.Add(retentionLimit - 24*time.Hour)
end = now.Add(retentionLimit)
f("future_1d_before_limit", start, end, false)
start = now.Add(retentionLimit + time.Minute)
end = now.Add(retentionLimit + 24*time.Hour)
f("future_1d_beyond_limit", start, end, true)
}
type futureTimestampsData struct {
samples []string
wantSeries []map[string]string
wantQueryResults []*apptest.QueryResult
}
func genFutureTimestampsData(prefix string, numMetrics, start, step int64) futureTimestampsData {
samples := make([]string, numMetrics)
wantSeries := make([]map[string]string, numMetrics)
wantQueryResults := make([]*apptest.QueryResult, numMetrics)
for i := range numMetrics {
metricName := fmt.Sprintf("metric_%s_%04d", prefix, i)
labelName := fmt.Sprintf("label_%s_%04d", prefix, i)
labelValue := fmt.Sprintf("value_%s_%04d", prefix, i)
value := i
timestamp := start + i*step
samples[i] = fmt.Sprintf(`%s{%s="value", label="%s"} %d %d`, metricName, labelName, labelValue, value, timestamp)
wantSeries[i] = map[string]string{
"__name__": metricName,
labelName: "value",
"label": labelValue,
}
wantQueryResults[i] = &apptest.QueryResult{
Metric: map[string]string{
"__name__": metricName,
labelName: "value",
"label": labelValue,
},
Samples: []*apptest.Sample{{Timestamp: timestamp, Value: float64(value)}},
}
}
return futureTimestampsData{samples, wantSeries, wantQueryResults}
}

View File

@@ -1,9 +1,7 @@
package tests
import (
"fmt"
"testing"
"time"
"github.com/google/go-cmp/cmp"
"github.com/google/go-cmp/cmp/cmpopts"
@@ -299,132 +297,6 @@ func TestSingleIngestionProtocols(t *testing.T) {
}
func TestSingleCardinalityLimiter(t *testing.T) {
waitFor := func(f func() bool) {
const (
retries = 20
period = 100 * time.Millisecond
)
t.Helper()
for i := 0; i < retries; i++ {
if f() {
return
}
time.Sleep(period)
}
t.Fatalf("timed out waiting for retry #%d", retries)
}
tc := apptest.NewTestCase(t)
defer tc.Stop()
singleHourly := tc.MustStartVmsingle("vmsingle-hourly", []string{
"-retentionPeriod=100y",
"-storage.maxHourlySeries=1",
})
singleHourly.PrometheusAPIV1ImportPrometheus(t, []string{
"foo_bar 1 1652169600000", // 2022-05-10T08:00:00Z
}, apptest.QueryOpts{})
if v := singleHourly.GetIntMetric(t, "vm_hourly_series_limit_max_series"); v != 1 {
t.Fatalf("unexpected vm_hourly_series_limit_max_series value: %d", v)
}
if v := singleHourly.GetIntMetric(t, "vm_hourly_series_limit_current_series"); v != 1 {
t.Fatalf("unexpected vm_hourly_series_limit_current_series value: %d", v)
}
if v := singleHourly.GetIntMetric(t, "vm_hourly_series_limit_rows_dropped_total"); v != 0 {
t.Fatalf("unexpected vm_hourly_series_limit_rows_dropped_total value: %d", v)
}
singleHourly.PrometheusAPIV1ImportPrometheus(t, []string{
"foo_bar2 1 1652169600000", // 2022-05-10T08:00:00Z
}, apptest.QueryOpts{})
waitFor(
func() bool {
return singleHourly.GetIntMetric(t, "vm_hourly_series_limit_rows_dropped_total") > 0
},
)
singleDaily := tc.MustStartVmsingle("vmsingle-daily", []string{
"-retentionPeriod=100y",
"-storage.maxDailySeries=1",
})
singleDaily.PrometheusAPIV1ImportPrometheus(t, []string{
"foo_bar 1 1652169600000", // 2022-05-10T08:00:00Z
}, apptest.QueryOpts{})
if v := singleDaily.GetIntMetric(t, "vm_daily_series_limit_max_series"); v != 1 {
t.Fatalf("unexpected vm_daily_series_limit_max_series value: %d", v)
}
if v := singleDaily.GetIntMetric(t, "vm_daily_series_limit_current_series"); v != 1 {
t.Fatalf("unexpected vm_daily_series_limit_current_series value: %d", v)
}
if v := singleDaily.GetIntMetric(t, "vm_daily_series_limit_rows_dropped_total"); v != 0 {
t.Fatalf("unexpected vm_daily_series_limit_rows_dropped_total value: %d", v)
}
singleDaily.PrometheusAPIV1ImportPrometheus(t, []string{
"foo_bar2 1 1652169600000", // 2022-05-10T08:00:00Z
}, apptest.QueryOpts{})
waitFor(
func() bool {
return singleDaily.GetIntMetric(t, "vm_daily_series_limit_rows_dropped_total") > 0
},
)
singleUnlimited := tc.MustStartVmsingle("vmsingle-unlimited", []string{
"-retentionPeriod=100y",
"-storage.maxHourlySeries=-1",
"-storage.maxDailySeries=-1",
})
metrics := make([]string, 0, 100)
for i := range 100 {
metrics = append(metrics, fmt.Sprintf("foo_bar%d 1 1652169600000", i)) // 2022-05-10T08:00:00Z
}
singleUnlimited.PrometheusAPIV1ImportPrometheus(t, metrics, apptest.QueryOpts{})
waitFor(
func() bool {
return singleUnlimited.GetIntMetric(t, "vm_hourly_series_limit_current_series") > 0
},
)
if v := singleUnlimited.GetIntMetric(t, "vm_hourly_series_limit_max_series"); v == 0 {
t.Fatalf("unexpected vm_hourly_series_limit_max_series value: %d", v)
}
if v := singleUnlimited.GetIntMetric(t, "vm_hourly_series_limit_current_series"); v != 100 {
t.Fatalf("unexpected vm_hourly_series_limit_current_series value: %d", v)
}
if v := singleUnlimited.GetIntMetric(t, "vm_hourly_series_limit_rows_dropped_total"); v != 0 {
t.Fatalf("unexpected vm_hourly_series_limit_rows_dropped_total value: %d", v)
}
if v := singleUnlimited.GetIntMetric(t, "vm_daily_series_limit_max_series"); v == 0 {
t.Fatalf("unexpected vm_daily_series_limit_max_series value: %d", v)
}
if v := singleUnlimited.GetIntMetric(t, "vm_daily_series_limit_current_series"); v != 100 {
t.Fatalf("unexpected vm_daily_series_limit_current_series value: %d", v)
}
if v := singleUnlimited.GetIntMetric(t, "vm_daily_series_limit_rows_dropped_total"); v != 0 {
t.Fatalf("unexpected vm_daily_series_limit_rows_dropped_total value: %d", v)
}
}
func TestClusterIngestionProtocols(t *testing.T) {
fs.MustRemoveDir(t.Name())
tc := apptest.NewTestCase(t)
@@ -719,145 +591,3 @@ func TestClusterIngestionProtocols(t *testing.T) {
})
}
func TestClusterCardinalityLimiter(t *testing.T) {
waitFor := func(f func() bool) {
const (
retries = 20
period = 100 * time.Millisecond
)
t.Helper()
for i := 0; i < retries; i++ {
if f() {
return
}
time.Sleep(period)
}
t.Fatalf("timed out waiting for retry #%d", retries)
}
tc := apptest.NewTestCase(t)
defer tc.Stop()
// Test hourly series limit
vmstorageHourly := tc.MustStartVmstorage("vmstorage-hourly", []string{
"-storageDataPath=" + tc.Dir() + "/vmstorage-hourly",
"-retentionPeriod=100y",
"-storage.maxHourlySeries=1",
})
vminsertHourly := tc.MustStartVminsert("vminsert-hourly", []string{
"-storageNode=" + vmstorageHourly.VminsertAddr(),
})
vminsertHourly.PrometheusAPIV1ImportPrometheus(t, []string{
"foo_bar 1 1652169600000", // 2022-05-10T08:00:00Z
}, apptest.QueryOpts{})
if v := vmstorageHourly.GetIntMetric(t, "vm_hourly_series_limit_max_series"); v != 1 {
t.Fatalf("unexpected vm_hourly_series_limit_max_series value: %d", v)
}
if v := vmstorageHourly.GetIntMetric(t, "vm_hourly_series_limit_current_series"); v != 1 {
t.Fatalf("unexpected vm_hourly_series_limit_current_series value: %d", v)
}
if v := vmstorageHourly.GetIntMetric(t, "vm_hourly_series_limit_rows_dropped_total"); v != 0 {
t.Fatalf("unexpected vm_hourly_series_limit_rows_dropped_total value: %d", v)
}
vminsertHourly.PrometheusAPIV1ImportPrometheus(t, []string{
"foo_bar2 1 1652169600000", // 2022-05-10T08:00:00Z
}, apptest.QueryOpts{})
waitFor(
func() bool {
return vmstorageHourly.GetIntMetric(t, "vm_hourly_series_limit_rows_dropped_total") > 0
},
)
// Test daily series limit
vmstorageDaily := tc.MustStartVmstorage("vmstorage-daily", []string{
"-storageDataPath=" + tc.Dir() + "/vmstorage-daily",
"-retentionPeriod=100y",
"-storage.maxDailySeries=1",
})
vminsertDaily := tc.MustStartVminsert("vminsert-daily", []string{
"-storageNode=" + vmstorageDaily.VminsertAddr(),
})
vminsertDaily.PrometheusAPIV1ImportPrometheus(t, []string{
"foo_bar 1 1652169600000", // 2022-05-10T08:00:00Z
}, apptest.QueryOpts{})
if v := vmstorageDaily.GetIntMetric(t, "vm_daily_series_limit_max_series"); v != 1 {
t.Fatalf("unexpected vm_daily_series_limit_max_series value: %d", v)
}
if v := vmstorageDaily.GetIntMetric(t, "vm_daily_series_limit_current_series"); v != 1 {
t.Fatalf("unexpected vm_daily_series_limit_current_series value: %d", v)
}
if v := vmstorageDaily.GetIntMetric(t, "vm_daily_series_limit_rows_dropped_total"); v != 0 {
t.Fatalf("unexpected vm_daily_series_limit_rows_dropped_total value: %d", v)
}
vminsertDaily.PrometheusAPIV1ImportPrometheus(t, []string{
"foo_bar2 1 1652169600000", // 2022-05-10T08:00:00Z
}, apptest.QueryOpts{})
waitFor(
func() bool {
return vmstorageDaily.GetIntMetric(t, "vm_daily_series_limit_rows_dropped_total") > 0
},
)
// Test unlimited series
vmstorageUnlimited := tc.MustStartVmstorage("vmstorage-unlimited", []string{
"-storageDataPath=" + tc.Dir() + "/vmstorage-unlimited",
"-retentionPeriod=100y",
"-storage.maxHourlySeries=-1",
"-storage.maxDailySeries=-1",
})
vminsertUnlimited := tc.MustStartVminsert("vminsert-unlimited", []string{
"-storageNode=" + vmstorageUnlimited.VminsertAddr(),
})
metrics := make([]string, 0, 100)
for i := range 100 {
metrics = append(metrics, fmt.Sprintf("foo_bar%d 1 1652169600000", i)) // 2022-05-10T08:00:00Z
}
vminsertUnlimited.PrometheusAPIV1ImportPrometheus(t, metrics, apptest.QueryOpts{})
waitFor(
func() bool {
return vmstorageUnlimited.GetIntMetric(t, "vm_hourly_series_limit_current_series") > 0
},
)
if v := vmstorageUnlimited.GetIntMetric(t, "vm_hourly_series_limit_max_series"); v == 0 {
t.Fatalf("unexpected vm_hourly_series_limit_max_series value: %d", v)
}
if v := vmstorageUnlimited.GetIntMetric(t, "vm_hourly_series_limit_current_series"); v != 100 {
t.Fatalf("unexpected vm_hourly_series_limit_current_series value: %d", v)
}
if v := vmstorageUnlimited.GetIntMetric(t, "vm_hourly_series_limit_rows_dropped_total"); v != 0 {
t.Fatalf("unexpected vm_hourly_series_limit_rows_dropped_total value: %d", v)
}
if v := vmstorageUnlimited.GetIntMetric(t, "vm_daily_series_limit_max_series"); v == 0 {
t.Fatalf("unexpected vm_daily_series_limit_max_series value: %d", v)
}
if v := vmstorageUnlimited.GetIntMetric(t, "vm_daily_series_limit_current_series"); v != 100 {
t.Fatalf("unexpected vm_daily_series_limit_current_series value: %d", v)
}
if v := vmstorageUnlimited.GetIntMetric(t, "vm_daily_series_limit_rows_dropped_total"); v != 0 {
t.Fatalf("unexpected vm_daily_series_limit_rows_dropped_total value: %d", v)
}
}

View File

@@ -3,9 +3,7 @@ package tests
import (
"fmt"
"math/rand/v2"
"net"
"testing"
"time"
"github.com/VictoriaMetrics/VictoriaMetrics/apptest"
)
@@ -72,162 +70,3 @@ func TestClusterMultilevelSelect(t *testing.T) {
assertSeries(vmselectL1)
assertSeries(vmselectL2)
}
// See https://github.com/VictoriaMetrics/VictoriaMetrics/issues/10678.
func TestClusterMultilevelPartialResponse(t *testing.T) {
tc := apptest.NewTestCase(t)
defer tc.Stop()
// Set up the following multi-level cluster configuration:
//
// |--> available vmstorage
// | ------> vmselect1 --|
// | |--> available vmstorage
// global-vmselect -------|
// | |--> available vmstorage
// | ------> vmselect2 --|
// |--> unavailable vmstorage
vmstorage1 := tc.MustStartVmstorage("vmstorage1", []string{
"-storageDataPath=" + tc.Dir() + "/vmstorage1",
})
vmstorage2 := tc.MustStartVmstorage("vmstorage2", []string{
"-storageDataPath=" + tc.Dir() + "/vmstorage2",
})
regionalVmselect1 := tc.MustStartVmselect("regional-vmselect1", []string{
"-storageNode=" + vmstorage1.VmselectAddr() + "," + vmstorage2.VmselectAddr(),
})
regionalVmselect2 := tc.MustStartVmselect("regional-vmselect2", []string{
"-storageNode=" + vmstorage1.VmselectAddr() + "," + noopTCPServerAddr(t),
})
globalVmselect := tc.MustStartVmselect("global-vmselect", []string{
"-storageNode=" + regionalVmselect1.ClusternativeListenAddr() + "," + regionalVmselect2.ClusternativeListenAddr(),
})
// 1. /api/v1/query
qopts := apptest.QueryOpts{Tenant: "0"}
assertQuery := func(app *apptest.Vmselect, want *apptest.PrometheusAPIV1QueryResponse) {
t.Helper()
tc.Assert(&apptest.AssertOptions{
Msg: "unexpected /api/v1/query response",
Got: func() any {
res := app.PrometheusAPIV1Query(t, `{__name__=~".*"}`, qopts)
res.Sort()
return res
},
Want: want,
})
}
// regional-vmselect1 should return full response.
assertQuery(regionalVmselect1, &apptest.PrometheusAPIV1QueryResponse{
Status: "success",
IsPartial: false,
Data: &apptest.QueryData{ResultType: "vector", Result: []*apptest.QueryResult{}},
})
// regional-vmselect2 should return partial response.
assertQuery(regionalVmselect2, &apptest.PrometheusAPIV1QueryResponse{
Status: "success",
IsPartial: true,
Data: &apptest.QueryData{ResultType: "vector", Result: []*apptest.QueryResult{}},
})
// global-vmselect should return partial response.
assertQuery(globalVmselect, &apptest.PrometheusAPIV1QueryResponse{
Status: "success",
IsPartial: true,
Data: &apptest.QueryData{ResultType: "vector", Result: []*apptest.QueryResult{}},
})
// 2. /api/v1/labels
start := time.Now().Unix()
assertLabel := func(app *apptest.Vmselect, want *apptest.PrometheusAPIV1LabelsResponse) {
t.Helper()
tc.Assert(&apptest.AssertOptions{
Msg: "unexpected /api/v1/label response",
Got: func() any {
res := app.PrometheusAPIV1Labels(t, `{__name__="up"}`, apptest.QueryOpts{
Start: fmt.Sprintf("%d", start-100),
End: fmt.Sprintf("%d", start),
})
return res
},
Want: want,
})
}
// regional-vmselect1 should return full response.
assertLabel(regionalVmselect1, &apptest.PrometheusAPIV1LabelsResponse{
Status: "success",
IsPartial: false,
Data: make([]string, 0),
})
// regional-vmselect2 should return partial response.
assertLabel(regionalVmselect2, &apptest.PrometheusAPIV1LabelsResponse{
Status: "success",
IsPartial: true,
Data: make([]string, 0),
})
// global-vmselect should return partial response.
assertLabel(globalVmselect, &apptest.PrometheusAPIV1LabelsResponse{
Status: "success",
IsPartial: true,
Data: make([]string, 0),
})
// 3. /api/v1/label/%s/values
assertSeries := func(app *apptest.Vmselect, want *apptest.PrometheusAPIV1SeriesResponse) {
t.Helper()
tc.Assert(&apptest.AssertOptions{
Msg: "unexpected /api/v1/series response",
Got: func() any {
res := app.PrometheusAPIV1Series(t, `{__name__="up"}`, apptest.QueryOpts{
Start: fmt.Sprintf("%d", start-100),
End: fmt.Sprintf("%d", start),
})
return res
},
Want: want,
})
}
// regional-vmselect1 should return full response.
assertSeries(regionalVmselect1, &apptest.PrometheusAPIV1SeriesResponse{
Status: "success",
IsPartial: false,
Data: make([]map[string]string, 0),
})
// regional-vmselect2 should return partial response.
assertSeries(regionalVmselect2, &apptest.PrometheusAPIV1SeriesResponse{
Status: "success",
IsPartial: true,
Data: make([]map[string]string, 0),
})
// global-vmselect should return partial response.
assertSeries(globalVmselect, &apptest.PrometheusAPIV1SeriesResponse{
Status: "success",
IsPartial: true,
Data: make([]map[string]string, 0),
})
}
// noopTCPServerAddr start local tcp server,
// which immediately closes any incoming connections
// and return it's address
func noopTCPServerAddr(t *testing.T) string {
t.Helper()
ln, err := net.Listen("tcp", "localhost:0")
if err != nil {
t.Fatalf("failed to create listener: %v", err)
}
go func() {
for {
conn, err := ln.Accept()
if err != nil {
return
}
conn.Close()
}
}()
t.Cleanup(func() { ln.Close() })
return ln.Addr().String()
}

View File

@@ -1,186 +0,0 @@
package tests
import (
"encoding/json"
"fmt"
"net/http"
"net/http/httptest"
"sort"
"strconv"
"strings"
"testing"
)
// openTSDBPoint is a single data point served by the mock OpenTSDB server.
type openTSDBPoint struct {
Metric string
Tags map[string]string
Timestamp int64
Value float64
}
// openTSDBMockServer implements the minimal subset of the OpenTSDB HTTP API
// used by vmctl opentsdb: /api/suggest, /api/search/lookup, /api/query.
type openTSDBMockServer struct {
server *httptest.Server
points []openTSDBPoint
}
// newOpenTSDBMockServer starts an httptest server serving the given points.
func newOpenTSDBMockServer(t *testing.T, points []openTSDBPoint) *openTSDBMockServer {
t.Helper()
s := &openTSDBMockServer{points: points}
mux := http.NewServeMux()
mux.HandleFunc("/api/suggest", s.handleSuggest)
mux.HandleFunc("/api/search/lookup", s.handleLookup)
mux.HandleFunc("/api/query", s.handleQuery)
s.server = httptest.NewServer(mux)
return s
}
// close shuts down the server.
func (s *openTSDBMockServer) close() { s.server.Close() }
// httpAddr returns the server URL.
func (s *openTSDBMockServer) httpAddr() string { return s.server.URL }
// handleSuggest serves https://opentsdb.net/docs/build/html/api_http/suggest.html
func (s *openTSDBMockServer) handleSuggest(w http.ResponseWriter, r *http.Request) {
q := r.URL.Query().Get("q")
seen := make(map[string]bool, len(s.points))
var out []string
for _, p := range s.points {
if seen[p.Metric] {
continue
}
if q != "" && !strings.Contains(p.Metric, q) {
continue
}
seen[p.Metric] = true
out = append(out, p.Metric)
}
_ = json.NewEncoder(w).Encode(out)
}
// handleLookup serves https://opentsdb.net/docs/build/html/api_http/search/lookup.html
func (s *openTSDBMockServer) handleLookup(w http.ResponseWriter, r *http.Request) {
metric := r.URL.Query().Get("m")
type meta struct {
Metric string `json:"metric"`
Tags map[string]string `json:"tags"`
}
seen := make(map[string]bool, len(s.points))
var results []meta
for _, p := range s.points {
if p.Metric != metric {
continue
}
key := tagsKey(p.Tags)
if seen[key] {
continue
}
seen[key] = true
results = append(results, meta{p.Metric, p.Tags})
}
_ = json.NewEncoder(w).Encode(map[string]any{
"type": "LOOKUP",
"metric": metric,
"results": results,
})
}
// handleQuery serves https://opentsdb.net/docs/build/html/api_http/query/index.html
func (s *openTSDBMockServer) handleQuery(w http.ResponseWriter, r *http.Request) {
m := r.URL.Query().Get("m")
metric, tagFilter, ok := parseQuery(m)
if !ok {
http.Error(w, "bad query param", http.StatusBadRequest)
return
}
start, err := strconv.ParseInt(r.URL.Query().Get("start"), 10, 64)
if err != nil {
http.Error(w, "bad start param", http.StatusBadRequest)
return
}
end, err := strconv.ParseInt(r.URL.Query().Get("end"), 10, 64)
if err != nil {
http.Error(w, "bad end param", http.StatusBadRequest)
return
}
type resp struct {
Metric string `json:"metric"`
Tags map[string]string `json:"tags"`
AggregateTags []string `json:"aggregateTags"`
Dps map[string]float64 `json:"dps"`
}
grouped := make(map[string]*resp, len(s.points))
for _, p := range s.points {
if p.Metric != metric {
continue
}
if !matchTags(p.Tags, tagFilter) {
continue
}
if p.Timestamp < start || p.Timestamp > end {
continue
}
key := tagsKey(p.Tags)
if _, exists := grouped[key]; !exists {
grouped[key] = &resp{
Metric: p.Metric,
Tags: p.Tags,
AggregateTags: []string{},
Dps: map[string]float64{},
}
}
grouped[key].Dps[fmt.Sprintf("%d", p.Timestamp)] = p.Value
}
out := make([]*resp, 0, len(grouped))
for _, v := range grouped {
out = append(out, v)
}
_ = json.NewEncoder(w).Encode(out)
}
// parseQuery parses the OpenTSDB m= query parameter.
// Format: "<agg>:<bucket>-<agg>-none:<metric>{k=v,k=v}"
func parseQuery(m string) (string, map[string]string, bool) {
parts := strings.SplitN(m, ":", 3)
if len(parts) != 3 {
return "", nil, false
}
metric, tagStr, _ := strings.Cut(parts[2], "{")
tags := make(map[string]string, 4)
tagStr = strings.TrimSuffix(tagStr, "}")
for _, kv := range strings.Split(tagStr, ",") {
if k, v, ok := strings.Cut(kv, "="); ok {
tags[k] = v
}
}
return metric, tags, true
}
func matchTags(got, filter map[string]string) bool {
for k, v := range filter {
if v == "*" {
continue
}
if got[k] != v {
return false
}
}
return true
}
func tagsKey(tags map[string]string) string {
keys := make([]string, 0, len(tags))
for k := range tags {
keys = append(keys, k)
}
sort.Strings(keys)
parts := make([]string, 0, len(keys))
for _, k := range keys {
parts = append(parts, k+"="+tags[k])
}
return strings.Join(parts, ",")
}

View File

@@ -1,28 +0,0 @@
{
"compaction": {
"level": 1,
"sources": [
"01KKS78P6B68DNJC87ZVPRGC3X"
]
},
"maxTime": 1735696740001,
"minTime": 1735689600000,
"stats": {
"numChunks": 8,
"numFloatSamples": 480,
"numSamples": 480,
"numSeries": 4
},
"thanos": {
"downsample": {
"resolution": 0
},
"labels": {
"prometheus": "test",
"replica": "0"
},
"source": "prometheus"
},
"ulid": "01KKS78P6B68DNJC87ZVPRGC3X",
"version": 1
}

View File

@@ -1,27 +0,0 @@
{
"compaction": {
"level": 1,
"sources": [
"01KKS78PKKR6BQ0SQ5BARRTAKC"
]
},
"maxTime": 1735696500001,
"minTime": 1735689600000,
"stats": {
"numChunks": 4,
"numSamples": 4,
"numSeries": 4
},
"thanos": {
"downsample": {
"resolution": 300000
},
"labels": {
"prometheus": "test",
"replica": "0"
},
"source": "prometheus"
},
"ulid": "01KKS78PKKR6BQ0SQ5BARRTAKC",
"version": 1
}

View File

@@ -1,27 +0,0 @@
{
"compaction": {
"level": 1,
"sources": [
"01KKS78PXE91TK8YX406DERWV2"
]
},
"maxTime": 1735693200001,
"minTime": 1735689600000,
"stats": {
"numChunks": 4,
"numSamples": 4,
"numSeries": 4
},
"thanos": {
"downsample": {
"resolution": 3600000
},
"labels": {
"prometheus": "test",
"replica": "0"
},
"source": "prometheus"
},
"ulid": "01KKS78PXE91TK8YX406DERWV2",
"version": 1
}

File diff suppressed because one or more lines are too long

File diff suppressed because one or more lines are too long

View File

@@ -3,7 +3,6 @@ package tests
import (
"fmt"
"io"
"math"
"net/http"
"net/http/httptest"
"strings"
@@ -13,7 +12,6 @@ import (
"github.com/VictoriaMetrics/VictoriaMetrics/apptest"
"github.com/VictoriaMetrics/VictoriaMetrics/lib/fs"
"github.com/VictoriaMetrics/VictoriaMetrics/lib/prompb"
)
// TestSingleVMAgentReloadConfigs verifies that vmagent reload new configurations on SIGHUP signal
@@ -306,11 +304,6 @@ func TestSingleVMAgentDropOnOverload(t *testing.T) {
// See initRemoteWriteCtxs function in remotewrite.go for details.
"-remoteWrite.maxRowsPerBlock=1000000000",
"-remoteWrite.tmpDataPath=" + tc.Dir() + "/vmagent",
// Delay retry logic to avoid race conditions with waitFor assertions.
// It improves the test stability on resource-constrained runners.
// Should be bigger than retries * period
"-remoteWrite.retryMinInterval=3s",
}, ``)
const (
@@ -369,218 +362,3 @@ func TestSingleVMAgentDropOnOverload(t *testing.T) {
},
)
}
func TestSingleVMAgentCardinalityLimiter(t *testing.T) {
waitFor := func(f func() bool) {
const (
retries = 20
period = 100 * time.Millisecond
)
t.Helper()
for i := 0; i < retries; i++ {
if f() {
return
}
time.Sleep(period)
}
t.Fatalf("timed out waiting for retry #%d", retries)
}
tc := apptest.NewTestCase(t)
defer tc.Stop()
remoteWriteSrv := httptest.NewServer(http.HandlerFunc(func(w http.ResponseWriter, r *http.Request) {
w.WriteHeader(http.StatusNoContent)
}))
defer remoteWriteSrv.Close()
// Verify hourly limit is applied
vmagent := tc.MustStartVmagent("vmagent-hourly", []string{
`-remoteWrite.flushInterval=50ms`,
fmt.Sprintf(`-remoteWrite.url=%s/api/v1/write`, remoteWriteSrv.URL),
"-remoteWrite.maxRowsPerBlock=1",
"-remoteWrite.maxHourlySeries=1",
"-remoteWrite.tmpDataPath=" + tc.Dir() + "/vmagent-hourly",
}, ``)
vmagent.APIV1ImportPrometheus(t, []string{
"foo_bar 1 1652169600000", // 2022-05-10T08:00:00Z
}, apptest.QueryOpts{})
if v := vmagent.GetIntMetric(t, "vmagent_hourly_series_limit_max_series"); v != 1 {
t.Fatalf("unexpected vmagent_hourly_series_limit_max_series value: %d", v)
}
if v := vmagent.GetIntMetric(t, "vmagent_hourly_series_limit_current_series"); v != 1 {
t.Fatalf("unexpected vmagent_hourly_series_limit_current_series value: %d", v)
}
if v := vmagent.GetIntMetric(t, "vmagent_hourly_series_limit_rows_dropped_total"); v != 0 {
t.Fatalf("unexpected vmagent_hourly_series_limit_rows_dropped_total value: %d", v)
}
vmagent.APIV1ImportPrometheusNoWaitFlush(t, []string{
"foo_bar2 1 1652169600000", // 2022-05-10T08:00:00Z
}, apptest.QueryOpts{})
waitFor(
func() bool {
return vmagent.GetIntMetric(t, "vmagent_hourly_series_limit_rows_dropped_total") > 0
},
)
// Daily limits
vmagent2 := tc.MustStartVmagent("vmagent-daily", []string{
`-remoteWrite.flushInterval=50ms`,
fmt.Sprintf(`-remoteWrite.url=%s/api/v1/write`, remoteWriteSrv.URL),
"-remoteWrite.maxRowsPerBlock=1",
"-remoteWrite.maxDailySeries=1",
"-remoteWrite.tmpDataPath=" + tc.Dir() + "/vmagent-daily",
}, ``)
vmagent2.APIV1ImportPrometheus(t, []string{
"foo_bar 1 1652169600000", // 2022-05-10T08:00:00Z
}, apptest.QueryOpts{})
if v := vmagent2.GetIntMetric(t, "vmagent_daily_series_limit_max_series"); v != 1 {
t.Fatalf("unexpected vmagent_daily_series_limit_max_series value: %d", v)
}
if v := vmagent2.GetIntMetric(t, "vmagent_daily_series_limit_current_series"); v != 1 {
t.Fatalf("unexpected vmagent_daily_series_limit_current_series value: %d", v)
}
if v := vmagent2.GetIntMetric(t, "vmagent_daily_series_limit_rows_dropped_total"); v != 0 {
t.Fatalf("unexpected vmagent_daily_series_limit_rows_dropped_total value: %d", v)
}
vmagent2.APIV1ImportPrometheusNoWaitFlush(t, []string{
"foo_bar2 1 1652169600000", // 2022-05-10T08:00:00Z
}, apptest.QueryOpts{})
waitFor(
func() bool {
return vmagent2.GetIntMetric(t, "vmagent_daily_series_limit_rows_dropped_total") > 0
},
)
// test running with unlimited tracker
vmagent3 := tc.MustStartVmagent("vmagent-unlimited", []string{
`-remoteWrite.flushInterval=50ms`,
fmt.Sprintf(`-remoteWrite.url=%s/api/v1/write`, remoteWriteSrv.URL),
"-remoteWrite.maxRowsPerBlock=10",
"-remoteWrite.maxDailySeries=-1",
"-remoteWrite.maxHourlySeries=-1",
"-remoteWrite.tmpDataPath=" + tc.Dir() + "/vmagent-unlimited",
}, ``)
metrics := make([]string, 0, 100)
for i := range 100 {
metrics = append(metrics, fmt.Sprintf("foo_bar%d 1 1652169600000", i)) // 2022-05-10T08:00:00Z
}
vmagent3.APIV1ImportPrometheusNoWaitFlush(t, metrics, apptest.QueryOpts{})
waitFor(
func() bool {
return vmagent3.GetIntMetric(t, "vmagent_hourly_series_limit_current_series") > 0
},
)
if v := vmagent3.GetIntMetric(t, "vmagent_hourly_series_limit_max_series"); v != math.MaxInt32 {
t.Fatalf("unexpected vmagent_hourly_series_limit_max_series value: %d", v)
}
if v := vmagent3.GetIntMetric(t, "vmagent_hourly_series_limit_current_series"); v != 100 {
t.Fatalf("unexpected vmagent_hourly_series_limit_current_series value: %d", v)
}
if v := vmagent3.GetIntMetric(t, "vmagent_hourly_series_limit_rows_dropped_total"); v != 0 {
t.Fatalf("unexpected vmagent_hourly_series_limit_rows_dropped_total value: %d", v)
}
if v := vmagent3.GetIntMetric(t, "vmagent_daily_series_limit_max_series"); v != math.MaxInt32 {
t.Fatalf("unexpected vmagent_daily_series_limit_max_series value: %d", v)
}
if v := vmagent3.GetIntMetric(t, "vmagent_daily_series_limit_current_series"); v != 100 {
t.Fatalf("unexpected vmagent_daily_series_limit_current_series value: %d", v)
}
if v := vmagent3.GetIntMetric(t, "vmagent_daily_series_limit_rows_dropped_total"); v != 0 {
t.Fatalf("unexpected vmagent_daily_series_limit_rows_dropped_total value: %d", v)
}
}
func TestClusterVMAgentForwardMetricsMetadata(t *testing.T) {
tc := apptest.NewTestCase(t)
defer tc.Stop()
sut := tc.MustStartDefaultCluster()
vmagent := tc.MustStartVmagent("vmagent", []string{
`-remoteWrite.flushInterval=50ms`,
`-remoteWrite.forcePromProto=true`,
`-enableMultitenantHandlers=true`,
"-remoteWrite.tmpDataPath=" + tc.Dir() + "/vmagent",
fmt.Sprintf(`-remoteWrite.url=http://%s/insert/multitenant/prometheus/api/v1/write`, sut.Vminsert.HTTPAddr()),
}, ``)
prometheusRemoteWriteDataSet := prompb.WriteRequest{
Metadata: []prompb.MetricMetadata{
{MetricFamilyName: "metric_name_4", Help: "some help message", Type: prompb.MetricTypeSummary, AccountID: 100},
},
}
vmagent.PrometheusAPIV1Write(t, prometheusRemoteWriteDataSet, apptest.QueryOpts{Tenant: "multitenant"})
tc.Assert(&apptest.AssertOptions{
Msg: "unexpected /api/v1/metadata response",
Got: func() any {
return sut.PrometheusAPIV1Metadata(t, ``, -1, apptest.QueryOpts{Tenant: "100:0"})
},
Want: &apptest.PrometheusAPIV1Metadata{
Status: "success",
Data: map[string][]apptest.MetadataEntry{
"metric_name_4": {{Help: "some help message", Type: "summary"}},
},
},
})
prometheusRemoteWriteDataSet = prompb.WriteRequest{
Metadata: []prompb.MetricMetadata{
{MetricFamilyName: "metric_name_6", Help: "some help message", Type: prompb.MetricTypeSummary, AccountID: 100},
},
}
// enforce tenant from request uri /insert/tenant_id/prometheus/api/v1/write
vmagent.PrometheusAPIV1Write(t, prometheusRemoteWriteDataSet, apptest.QueryOpts{Tenant: "500:500"})
tc.Assert(&apptest.AssertOptions{
Msg: "unexpected /api/v1/metadata response",
Got: func() any {
return sut.PrometheusAPIV1Metadata(t, ``, -1, apptest.QueryOpts{Tenant: "500:500"})
},
Want: &apptest.PrometheusAPIV1Metadata{
Status: "success",
Data: map[string][]apptest.MetadataEntry{
"metric_name_6": {{Help: "some help message", Type: "summary"}},
},
},
})
tc.Assert(&apptest.AssertOptions{
Msg: "unexpected /api/v1/metadata response",
Got: func() any {
return sut.PrometheusAPIV1Metadata(t, ``, -1, apptest.QueryOpts{Tenant: "multitenant"})
},
Want: &apptest.PrometheusAPIV1Metadata{
Status: "success",
Data: map[string][]apptest.MetadataEntry{
"metric_name_4": {{Help: "some help message", Type: "summary"}},
"metric_name_6": {{Help: "some help message", Type: "summary"}},
},
},
})
}

View File

@@ -1,167 +0,0 @@
package tests
import (
"fmt"
"testing"
"time"
"github.com/google/go-cmp/cmp"
"github.com/google/go-cmp/cmp/cmpopts"
"github.com/VictoriaMetrics/VictoriaMetrics/apptest"
"github.com/VictoriaMetrics/VictoriaMetrics/lib/fs"
)
func TestSingleVmctlOpenTSDBProtocol(t *testing.T) {
fs.MustRemoveDir(t.Name())
tc := apptest.NewTestCase(t)
defer tc.Stop()
vmsingleDst := tc.MustStartDefaultVmsingle()
vmAddr := fmt.Sprintf("http://%s/", vmsingleDst.HTTPAddr())
// Generate 60 points at 1-minute intervals starting 2 hours ago.
// This ensures data falls within vmctl's default query window (now - retention).
baseTS := time.Now().Add(-2 * time.Hour).Truncate(time.Minute).Unix()
points := make([]openTSDBPoint, 0, 60)
for i := range 60 {
points = append(points, openTSDBPoint{
Metric: "test.cpu",
Tags: map[string]string{"host": "h1", "env": "prod"},
Timestamp: baseTS + int64(i*60),
Value: float64(i),
})
}
otsdb := newOpenTSDBMockServer(t, points)
defer otsdb.close()
vmctlFlags := []string{
`opentsdb`,
`--otsdb-addr=` + otsdb.httpAddr(),
`--vm-addr=` + vmAddr,
`--otsdb-retentions=ssum-1m-avg:1d:1d`,
`--otsdb-filters=test`,
`--otsdb-normalize`,
`--disable-progress-bar=true`,
`-s`,
}
testOpenTSDBProtocol(tc, vmsingleDst, vmctlFlags, points, "test_cpu", baseTS)
}
func TestClusterVmctlOpenTSDBProtocol(t *testing.T) {
fs.MustRemoveDir(t.Name())
tc := apptest.NewTestCase(t)
defer tc.Stop()
cluster := tc.MustStartDefaultCluster()
vmAddr := fmt.Sprintf("http://%s/", cluster.Vminsert.HTTPAddr())
// Generate 60 points at 1-minute intervals starting 2 hours ago.
baseTS := time.Now().Add(-2 * time.Hour).Truncate(time.Minute).Unix()
points := make([]openTSDBPoint, 0, 60)
for i := range 60 {
points = append(points, openTSDBPoint{
Metric: "test.mem",
Tags: map[string]string{"host": "h1"},
Timestamp: baseTS + int64(i*60),
Value: float64(i * 2),
})
}
otsdb := newOpenTSDBMockServer(t, points)
defer otsdb.close()
vmctlFlags := []string{
`opentsdb`,
`--otsdb-addr=` + otsdb.httpAddr(),
`--vm-addr=` + vmAddr,
`--otsdb-retentions=sum-1m-avg:1d:1d`,
`--otsdb-filters=test`,
`--otsdb-normalize`,
`--disable-progress-bar=true`,
`--vm-account-id=0`,
`-s`,
}
testOpenTSDBProtocol(tc, cluster, vmctlFlags, points, "test_mem", baseTS)
}
func testOpenTSDBProtocol(
tc *apptest.TestCase,
queries apptest.PrometheusWriteQuerier,
vmctlFlags []string,
points []openTSDBPoint,
vmMetricName string,
baseTS int64,
) {
t := tc.T()
t.Helper()
// Build dynamic time range covering all data points with 1-hour padding.
queryStart := time.Unix(baseTS-3600, 0).UTC().Format(time.RFC3339)
queryEnd := time.Unix(baseTS+7200, 0).UTC().Format(time.RFC3339)
cmpOpt := cmpopts.IgnoreFields(apptest.PrometheusAPIV1QueryResponse{}, "Status", "Data.ResultType")
got := queries.PrometheusAPIV1Query(t, `{__name__=~".*"}`, apptest.QueryOpts{
Step: "5m",
Time: queryStart,
})
want := apptest.NewPrometheusAPIV1QueryResponse(t, `{"data":{"result":[]}}`)
if diff := cmp.Diff(want, got, cmpOpt); diff != "" {
t.Errorf("unexpected response (-want, +got):\n%s", diff)
}
tc.MustStartVmctl("vmctl", vmctlFlags)
queries.ForceFlush(t)
expected := buildExpectedOpenTSDBResult(points, vmMetricName)
tc.Assert(&apptest.AssertOptions{
Retries: 300,
Msg: `unexpected metrics stored via opentsdb protocol`,
Got: func() any {
r := queries.PrometheusAPIV1Export(t, fmt.Sprintf(`{__name__=%q}`, vmMetricName), apptest.QueryOpts{
Start: queryStart,
End: queryEnd,
})
r.Sort()
return r.Data.Result
},
Want: expected,
CmpOpts: []cmp.Option{
cmpopts.IgnoreFields(apptest.PrometheusAPIV1QueryResponse{}, "Status", "Data.ResultType"),
},
})
}
func buildExpectedOpenTSDBResult(points []openTSDBPoint, vmMetricName string) []*apptest.QueryResult {
grouped := map[string]*apptest.QueryResult{}
for _, p := range points {
metric := map[string]string{"__name__": vmMetricName}
for k, v := range p.Tags {
metric[k] = v
}
key := tagsKey(metric)
if _, ok := grouped[key]; !ok {
grouped[key] = &apptest.QueryResult{Metric: metric}
}
grouped[key].Samples = append(grouped[key].Samples, &apptest.Sample{
Timestamp: p.Timestamp * 1000,
Value: p.Value,
})
}
out := make([]*apptest.QueryResult, 0, len(grouped))
for _, v := range grouped {
out = append(out, v)
}
resp := apptest.PrometheusAPIV1QueryResponse{
Data: &apptest.QueryData{Result: out},
}
resp.Sort()
return resp.Data.Result
}

View File

@@ -1,180 +0,0 @@
package tests
import (
"encoding/json"
"fmt"
"io"
"os"
"testing"
"github.com/google/go-cmp/cmp"
"github.com/google/go-cmp/cmp/cmpopts"
"github.com/VictoriaMetrics/VictoriaMetrics/apptest"
"github.com/VictoriaMetrics/VictoriaMetrics/lib/fs"
)
const (
// thanosSnapshot contains both raw (resolution=0) and downsampled (resolution>0) blocks
// with Thanos metadata in meta.json.
thanosSnapshot = "./testdata/thanos-snapshot"
// thanosExpectedAllAggrResponse is the expected response when all aggregate types are imported
// (default behavior without --thanos-aggr-types flag).
thanosExpectedAllAggrResponse = "./testdata/thanos-snapshot/expected_all_aggr_response.json"
// thanosExpectedFilteredAggrResponse is the expected response when only specific aggregate
// types are imported via --thanos-aggr-types flag.
thanosExpectedFilteredAggrResponse = "./testdata/thanos-snapshot/expected_filtered_aggr_response.json"
// thanosQueryFilter is the PromQL query to select the test metrics.
thanosQueryFilter = `{__name__=~"thanos_test.*"}`
// thanosQueryTimeStart and thanosQueryTimeEnd define the time range for querying imported data.
thanosQueryTimeStart = "2025-01-01T00:00:00Z"
thanosQueryTimeEnd = "2025-01-01T02:00:00Z"
)
// TestSingleVmctlThanosMigrationAllAggr tests migration of Thanos blocks without
// --thanos-aggr-types flag. All aggregate types should be imported by default.
func TestSingleVmctlThanosMigrationAllAggr(t *testing.T) {
fs.MustRemoveDir(t.Name())
tc := apptest.NewTestCase(t)
defer tc.Stop()
vmsingleDst := tc.MustStartDefaultVmsingle()
vmAddr := fmt.Sprintf("http://%s/", vmsingleDst.HTTPAddr())
vmctlFlags := []string{
`thanos`,
`--thanos-snapshot=` + thanosSnapshot,
`--vm-addr=` + vmAddr,
`--disable-progress-bar=true`,
}
testThanosMigration(tc, vmsingleDst, vmctlFlags, thanosExpectedAllAggrResponse)
}
// TestClusterVmctlThanosMigrationAllAggr tests migration of Thanos blocks to cluster
// without --thanos-aggr-types flag. All aggregate types should be imported by default.
func TestClusterVmctlThanosMigrationAllAggr(t *testing.T) {
fs.MustRemoveDir(t.Name())
tc := apptest.NewTestCase(t)
defer tc.Stop()
cluster := tc.MustStartDefaultCluster()
vmAddr := fmt.Sprintf("http://%s/", cluster.Vminsert.HTTPAddr())
vmctlFlags := []string{
`thanos`,
`--thanos-snapshot=` + thanosSnapshot,
`--vm-addr=` + vmAddr,
`--disable-progress-bar=true`,
`--vm-account-id=0`,
}
testThanosMigration(tc, cluster, vmctlFlags, thanosExpectedAllAggrResponse)
}
// TestSingleVmctlThanosMigrationFilteredAggr tests migration of Thanos blocks with
// --thanos-aggr-types flag set to specific types (e.g., count,sum).
func TestSingleVmctlThanosMigrationFilteredAggr(t *testing.T) {
fs.MustRemoveDir(t.Name())
tc := apptest.NewTestCase(t)
defer tc.Stop()
vmsingleDst := tc.MustStartDefaultVmsingle()
vmAddr := fmt.Sprintf("http://%s/", vmsingleDst.HTTPAddr())
vmctlFlags := []string{
`thanos`,
`--thanos-snapshot=` + thanosSnapshot,
`--vm-addr=` + vmAddr,
`--disable-progress-bar=true`,
`--thanos-aggr-types=count`,
`--thanos-aggr-types=sum`,
}
testThanosMigration(tc, vmsingleDst, vmctlFlags, thanosExpectedFilteredAggrResponse)
}
// TestClusterVmctlThanosMigrationFilteredAggr tests migration of Thanos blocks to cluster
// with --thanos-aggr-types flag set to specific types (e.g., count,sum).
func TestClusterVmctlThanosMigrationFilteredAggr(t *testing.T) {
fs.MustRemoveDir(t.Name())
tc := apptest.NewTestCase(t)
defer tc.Stop()
cluster := tc.MustStartDefaultCluster()
vmAddr := fmt.Sprintf("http://%s/", cluster.Vminsert.HTTPAddr())
vmctlFlags := []string{
`thanos`,
`--thanos-snapshot=` + thanosSnapshot,
`--vm-addr=` + vmAddr,
`--disable-progress-bar=true`,
`--vm-account-id=0`,
`--thanos-aggr-types=count`,
`--thanos-aggr-types=sum`,
}
testThanosMigration(tc, cluster, vmctlFlags, thanosExpectedFilteredAggrResponse)
}
func testThanosMigration(tc *apptest.TestCase, sut apptest.PrometheusWriteQuerier, vmctlFlags []string, expectedFile string) {
t := tc.T()
t.Helper()
cmpOpt := cmpopts.IgnoreFields(apptest.PrometheusAPIV1QueryResponse{}, "Status", "Data.ResultType")
// Verify no data exists before migration
got := sut.PrometheusAPIV1Query(t, thanosQueryFilter, apptest.QueryOpts{
Step: "5m",
Time: thanosQueryTimeStart,
})
want := apptest.NewPrometheusAPIV1QueryResponse(t, `{"data":{"result":[]}}`)
if diff := cmp.Diff(want, got, cmpOpt); diff != "" {
t.Errorf("unexpected response before migration (-want, +got):\n%s", diff)
}
// Run vmctl migration
tc.MustStartVmctl("vmctl", vmctlFlags)
sut.ForceFlush(t)
// Load expected response
file, err := os.Open(expectedFile)
if err != nil {
t.Fatalf("cannot open expected response file: %s", err)
}
defer file.Close()
bytes, err := io.ReadAll(file)
if err != nil {
t.Fatalf("cannot read expected response file: %s", err)
}
var wantResponse apptest.PrometheusAPIV1QueryResponse
if err := json.Unmarshal(bytes, &wantResponse); err != nil {
t.Fatalf("cannot unmarshal expected response file: %s", err)
}
wantResponse.Sort()
tc.Assert(&apptest.AssertOptions{
Retries: 300,
Msg: "unexpected metrics stored after Thanos migration",
Got: func() any {
result := sut.PrometheusAPIV1Export(t, thanosQueryFilter, apptest.QueryOpts{
Start: thanosQueryTimeStart,
End: thanosQueryTimeEnd,
})
result.Sort()
return result.Data.Result
},
Want: wantResponse.Data.Result,
CmpOpts: []cmp.Option{
cmpopts.IgnoreFields(apptest.PrometheusAPIV1QueryResponse{}, "Status", "Data.ResultType"),
},
})
}

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